EP2200735A1 - Verfahren zur kontinuierlichen herstellung von färbemitteln für keratinische fasern - Google Patents
Verfahren zur kontinuierlichen herstellung von färbemitteln für keratinische fasernInfo
- Publication number
- EP2200735A1 EP2200735A1 EP08802984A EP08802984A EP2200735A1 EP 2200735 A1 EP2200735 A1 EP 2200735A1 EP 08802984 A EP08802984 A EP 08802984A EP 08802984 A EP08802984 A EP 08802984A EP 2200735 A1 EP2200735 A1 EP 2200735A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- group
- amino
- acid
- additional
- preferred
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Ceased
Links
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- 229940081510 piroctone olamine Drugs 0.000 description 1
- 229920002553 poly(2-methacrylolyloxyethyltrimethylammonium chloride) polymer Polymers 0.000 description 1
- 229920002401 polyacrylamide Polymers 0.000 description 1
- 229920001521 polyalkylene glycol ether Polymers 0.000 description 1
- 239000000244 polyoxyethylene sorbitan monooleate Substances 0.000 description 1
- 235000010482 polyoxyethylene sorbitan monooleate Nutrition 0.000 description 1
- 229920000136 polysorbate Polymers 0.000 description 1
- 229940068968 polysorbate 80 Drugs 0.000 description 1
- 229920000053 polysorbate 80 Polymers 0.000 description 1
- 229940068965 polysorbates Drugs 0.000 description 1
- 229920000166 polytrimethylene carbonate Polymers 0.000 description 1
- 239000001267 polyvinylpyrrolidone Substances 0.000 description 1
- 235000012731 ponceau 4R Nutrition 0.000 description 1
- 239000004175 ponceau 4R Substances 0.000 description 1
- 235000019353 potassium silicate Nutrition 0.000 description 1
- 239000003380 propellant Substances 0.000 description 1
- QQONPFPTGQHPMA-UHFFFAOYSA-N propylene Natural products CC=C QQONPFPTGQHPMA-UHFFFAOYSA-N 0.000 description 1
- 125000004805 propylene group Chemical group [H]C([H])([H])C([H])([*:1])C([H])([H])[*:2] 0.000 description 1
- CPNGPNLZQNNVQM-UHFFFAOYSA-N pteridine Chemical compound N1=CN=CC2=NC=CN=C21 CPNGPNLZQNNVQM-UHFFFAOYSA-N 0.000 description 1
- 238000005086 pumping Methods 0.000 description 1
- WDFVICOGUPEJEQ-UHFFFAOYSA-N pyrazol-3-one;hydrochloride Chemical compound Cl.O=C1C=CN=N1 WDFVICOGUPEJEQ-UHFFFAOYSA-N 0.000 description 1
- FFNJDUZBKSGSIV-UHFFFAOYSA-N pyrazolo[1,5-a]pyrimidine-3,5-diamine Chemical compound C1=CC(N)=NC2=C(N)C=NN21 FFNJDUZBKSGSIV-UHFFFAOYSA-N 0.000 description 1
- PNFZIEOWPDFJBH-UHFFFAOYSA-N pyrazolo[1,5-a]pyrimidine-3,7-diamine Chemical compound NC1=CC=NC2=C(N)C=NN21 PNFZIEOWPDFJBH-UHFFFAOYSA-N 0.000 description 1
- 125000003226 pyrazolyl group Chemical group 0.000 description 1
- PBMFSQRYOILNGV-UHFFFAOYSA-N pyridazine Chemical compound C1=CC=NN=C1 PBMFSQRYOILNGV-UHFFFAOYSA-N 0.000 description 1
- UMJSCPRVCHMLSP-UHFFFAOYSA-N pyridine Natural products COC1=CC=CN=C1 UMJSCPRVCHMLSP-UHFFFAOYSA-N 0.000 description 1
- VHNQIURBCCNWDN-UHFFFAOYSA-N pyridine-2,6-diamine Chemical compound NC1=CC=CC(N)=N1 VHNQIURBCCNWDN-UHFFFAOYSA-N 0.000 description 1
- WLFXSECCHULRRO-UHFFFAOYSA-N pyridine-2,6-diol Chemical compound OC1=CC=CC(O)=N1 WLFXSECCHULRRO-UHFFFAOYSA-N 0.000 description 1
- JUJWROOIHBZHMG-UHFFFAOYSA-O pyridinium Chemical compound C1=CC=[NH+]C=C1 JUJWROOIHBZHMG-UHFFFAOYSA-O 0.000 description 1
- 229960003581 pyridoxal Drugs 0.000 description 1
- 235000008164 pyridoxal Nutrition 0.000 description 1
- 239000011674 pyridoxal Substances 0.000 description 1
- VTGOHKSTWXHQJK-UHFFFAOYSA-N pyrimidin-2-ol Chemical compound OC1=NC=CC=N1 VTGOHKSTWXHQJK-UHFFFAOYSA-N 0.000 description 1
- CSNFMBGHUOSBFU-UHFFFAOYSA-N pyrimidine-2,4,5-triamine Chemical compound NC1=NC=C(N)C(N)=N1 CSNFMBGHUOSBFU-UHFFFAOYSA-N 0.000 description 1
- MISVBCMQSJUHMH-UHFFFAOYSA-N pyrimidine-4,6-diamine Chemical compound NC1=CC(N)=NC=N1 MISVBCMQSJUHMH-UHFFFAOYSA-N 0.000 description 1
- 229940079877 pyrogallol Drugs 0.000 description 1
- DQAKJEWZWDQURW-UHFFFAOYSA-N pyrrolidonecarboxylic acid Chemical class OC(=O)N1CCCC1=O DQAKJEWZWDQURW-UHFFFAOYSA-N 0.000 description 1
- 229940079053 quaternium-27 Drugs 0.000 description 1
- 238000005956 quaternization reaction Methods 0.000 description 1
- JWVCLYRUEFBMGU-UHFFFAOYSA-N quinazoline Chemical compound N1=CN=CC2=CC=CC=C21 JWVCLYRUEFBMGU-UHFFFAOYSA-N 0.000 description 1
- 229940051201 quinoline yellow Drugs 0.000 description 1
- IZMJMCDDWKSTTK-UHFFFAOYSA-N quinoline yellow Chemical compound C1=CC=CC2=NC(C3C(C4=CC=CC=C4C3=O)=O)=CC=C21 IZMJMCDDWKSTTK-UHFFFAOYSA-N 0.000 description 1
- XSCHRSMBECNVNS-UHFFFAOYSA-O quinoxalin-1-ium Chemical compound [NH+]1=CC=NC2=CC=CC=C21 XSCHRSMBECNVNS-UHFFFAOYSA-O 0.000 description 1
- 150000003252 quinoxalines Chemical class 0.000 description 1
- 230000009257 reactivity Effects 0.000 description 1
- 230000008707 rearrangement Effects 0.000 description 1
- 230000009467 reduction Effects 0.000 description 1
- 238000000518 rheometry Methods 0.000 description 1
- PYWVYCXTNDRMGF-UHFFFAOYSA-N rhodamine B Chemical compound [Cl-].C=12C=CC(=[N+](CC)CC)C=C2OC2=CC(N(CC)CC)=CC=C2C=1C1=CC=CC=C1C(O)=O PYWVYCXTNDRMGF-UHFFFAOYSA-N 0.000 description 1
- 238000007363 ring formation reaction Methods 0.000 description 1
- 230000000630 rising effect Effects 0.000 description 1
- 229910052707 ruthenium Inorganic materials 0.000 description 1
- OARRHUQTFTUEOS-UHFFFAOYSA-N safranin Chemical compound [Cl-].C=12C=C(N)C(C)=CC2=NC2=CC(C)=C(N)C=C2[N+]=1C1=CC=CC=C1 OARRHUQTFTUEOS-UHFFFAOYSA-N 0.000 description 1
- SOUHUMACVWVDME-UHFFFAOYSA-N safranin O Chemical compound [Cl-].C12=CC(N)=CC=C2N=C2C=CC(N)=CC2=[N+]1C1=CC=CC=C1 SOUHUMACVWVDME-UHFFFAOYSA-N 0.000 description 1
- 229960004889 salicylic acid Drugs 0.000 description 1
- 150000003902 salicylic acid esters Chemical class 0.000 description 1
- 229940043230 sarcosine Drugs 0.000 description 1
- 235000003441 saturated fatty acids Nutrition 0.000 description 1
- 150000004671 saturated fatty acids Chemical class 0.000 description 1
- 239000004208 shellac Substances 0.000 description 1
- ZLGIYFNHBLSMPS-ATJNOEHPSA-N shellac Chemical compound OCCCCCC(O)C(O)CCCCCCCC(O)=O.C1C23[C@H](C(O)=O)CCC2[C@](C)(CO)[C@@H]1C(C(O)=O)=C[C@@H]3O ZLGIYFNHBLSMPS-ATJNOEHPSA-N 0.000 description 1
- 229940113147 shellac Drugs 0.000 description 1
- 235000013874 shellac Nutrition 0.000 description 1
- 238000007086 side reaction Methods 0.000 description 1
- 239000000344 soap Substances 0.000 description 1
- FPSFKBGHBCHTOE-UHFFFAOYSA-M sodium 1-[(3-methyl-5-oxo-1-phenyl-4H-pyrazol-4-yl)diazenyl]-4-sulfonaphthalen-2-olate Chemical compound [Na+].O=C1C(N=NC=2C3=CC=CC=C3C(=CC=2O)S([O-])(=O)=O)C(C)=NN1C1=CC=CC=C1 FPSFKBGHBCHTOE-UHFFFAOYSA-M 0.000 description 1
- UWMZZSRDUVJJDP-UHFFFAOYSA-M sodium 2-[3-(2-methylanilino)-6-(2-methyl-4-sulfonatoanilino)xanthen-10-ium-9-yl]benzoate Chemical compound [Na+].Cc1ccccc1Nc1ccc2c(-c3ccccc3C([O-])=O)c3ccc(Nc4ccc(cc4C)S([O-])(=O)=O)cc3[o+]c2c1 UWMZZSRDUVJJDP-UHFFFAOYSA-M 0.000 description 1
- COEZWFYORILMOM-UHFFFAOYSA-M sodium 4-[(2,4-dihydroxyphenyl)diazenyl]benzenesulfonate Chemical compound [Na+].OC1=CC(O)=CC=C1N=NC1=CC=C(S([O-])(=O)=O)C=C1 COEZWFYORILMOM-UHFFFAOYSA-M 0.000 description 1
- HRZFUMHJMZEROT-UHFFFAOYSA-L sodium disulfite Chemical compound [Na+].[Na+].[O-]S(=O)S([O-])(=O)=O HRZFUMHJMZEROT-UHFFFAOYSA-L 0.000 description 1
- 235000009518 sodium iodide Nutrition 0.000 description 1
- 229940001584 sodium metabisulfite Drugs 0.000 description 1
- 235000010262 sodium metabisulphite Nutrition 0.000 description 1
- NTHWMYGWWRZVTN-UHFFFAOYSA-N sodium silicate Chemical compound [Na+].[Na+].[O-][Si]([O-])=O NTHWMYGWWRZVTN-UHFFFAOYSA-N 0.000 description 1
- VRDAELYOGRCZQD-NFLRKZIHSA-M sodium;4-[(2z)-2-[(5e)-5-[(2,4-dimethylphenyl)hydrazinylidene]-4,6-dioxocyclohex-2-en-1-ylidene]hydrazinyl]benzenesulfonate Chemical compound [Na+].CC1=CC(C)=CC=C1N\N=C(/C(=O)C=C\1)C(=O)C/1=N\NC1=CC=C(S([O-])(=O)=O)C=C1 VRDAELYOGRCZQD-NFLRKZIHSA-M 0.000 description 1
- STZCRXQWRGQSJD-UHFFFAOYSA-N sodium;4-[[4-(dimethylamino)phenyl]diazenyl]benzenesulfonic acid Chemical compound [Na+].C1=CC(N(C)C)=CC=C1N=NC1=CC=C(S(O)(=O)=O)C=C1 STZCRXQWRGQSJD-UHFFFAOYSA-N 0.000 description 1
- QKHBMQWPOUUMQZ-BDQAORGHSA-M sodium;hydron;(2s)-2-(octadecanoylamino)pentanedioate Chemical compound [Na+].CCCCCCCCCCCCCCCCCC(=O)N[C@H](C(O)=O)CCC([O-])=O QKHBMQWPOUUMQZ-BDQAORGHSA-M 0.000 description 1
- LJFWQNJLLOFIJK-UHFFFAOYSA-N solvent violet 13 Chemical compound C1=CC(C)=CC=C1NC1=CC=C(O)C2=C1C(=O)C1=CC=CC=C1C2=O LJFWQNJLLOFIJK-UHFFFAOYSA-N 0.000 description 1
- 238000001179 sorption measurement Methods 0.000 description 1
- 229940001941 soy protein Drugs 0.000 description 1
- 239000008347 soybean phospholipid Substances 0.000 description 1
- 239000012177 spermaceti Substances 0.000 description 1
- 229940084106 spermaceti Drugs 0.000 description 1
- 239000003381 stabilizer Substances 0.000 description 1
- 230000000087 stabilizing effect Effects 0.000 description 1
- 238000007447 staining method Methods 0.000 description 1
- 239000007858 starting material Substances 0.000 description 1
- 239000008117 stearic acid Substances 0.000 description 1
- 238000003860 storage Methods 0.000 description 1
- 238000006467 substitution reaction Methods 0.000 description 1
- 239000001384 succinic acid Substances 0.000 description 1
- 125000000565 sulfonamide group Chemical group 0.000 description 1
- 150000003871 sulfonates Chemical class 0.000 description 1
- 125000001273 sulfonato group Chemical group [O-]S(*)(=O)=O 0.000 description 1
- 229960000368 sulisobenzone Drugs 0.000 description 1
- 229910021653 sulphate ion Inorganic materials 0.000 description 1
- KCDXJAYRVLXPFO-UHFFFAOYSA-N syringaldehyde Chemical compound COC1=CC(C=O)=CC(OC)=C1O KCDXJAYRVLXPFO-UHFFFAOYSA-N 0.000 description 1
- 238000005496 tempering Methods 0.000 description 1
- 229920001897 terpolymer Polymers 0.000 description 1
- ZFFFXKCZHWHRET-UHFFFAOYSA-N tert-butyl n-(2-bromo-6-chloropyridin-3-yl)carbamate Chemical compound CC(C)(C)OC(=O)NC1=CC=C(Cl)N=C1Br ZFFFXKCZHWHRET-UHFFFAOYSA-N 0.000 description 1
- 125000001302 tertiary amino group Chemical group 0.000 description 1
- CIHOLLKRGTVIJN-UHFFFAOYSA-N tert‐butyl hydroperoxide Chemical compound CC(C)(C)OO CIHOLLKRGTVIJN-UHFFFAOYSA-N 0.000 description 1
- TUNFSRHWOTWDNC-HKGQFRNVSA-N tetradecanoic acid Chemical compound CCCCCCCCCCCCC[14C](O)=O TUNFSRHWOTWDNC-HKGQFRNVSA-N 0.000 description 1
- 239000002562 thickening agent Substances 0.000 description 1
- 125000004149 thio group Chemical group *S* 0.000 description 1
- 125000003396 thiol group Chemical group [H]S* 0.000 description 1
- 229930192474 thiophene Natural products 0.000 description 1
- DHCDFWKWKRSZHF-UHFFFAOYSA-L thiosulfate(2-) Chemical group [O-]S([S-])(=O)=O DHCDFWKWKRSZHF-UHFFFAOYSA-L 0.000 description 1
- 239000001585 thymus vulgaris Substances 0.000 description 1
- UIERETOOQGIECD-ONEGZZNKSA-N tiglic acid Chemical compound C\C=C(/C)C(O)=O UIERETOOQGIECD-ONEGZZNKSA-N 0.000 description 1
- 238000004448 titration Methods 0.000 description 1
- JOXIMZWYDAKGHI-UHFFFAOYSA-M toluene-4-sulfonate Chemical compound CC1=CC=C(S([O-])(=O)=O)C=C1 JOXIMZWYDAKGHI-UHFFFAOYSA-M 0.000 description 1
- 230000002110 toxicologic effect Effects 0.000 description 1
- 231100000027 toxicology Toxicity 0.000 description 1
- 238000012549 training Methods 0.000 description 1
- DKZBBWMURDFHNE-UHFFFAOYSA-N trans-coniferylaldehyde Natural products COC1=CC(C=CC=O)=CC=C1O DKZBBWMURDFHNE-UHFFFAOYSA-N 0.000 description 1
- 150000003626 triacylglycerols Chemical class 0.000 description 1
- 125000005208 trialkylammonium group Chemical group 0.000 description 1
- 150000003918 triazines Chemical class 0.000 description 1
- 150000003628 tricarboxylic acids Chemical class 0.000 description 1
- 125000002889 tridecyl group Chemical group [H]C([*])([H])C([H])([H])C([H])([H])C([H])([H])C([H])([H])C([H])([H])C([H])([H])C([H])([H])C([H])([H])C([H])([H])C([H])([H])C([H])([H])C([H])([H])[H] 0.000 description 1
- RRHXZLALVWBDKH-UHFFFAOYSA-M trimethyl-[2-(2-methylprop-2-enoyloxy)ethyl]azanium;chloride Chemical compound [Cl-].CC(=C)C(=O)OCC[N+](C)(C)C RRHXZLALVWBDKH-UHFFFAOYSA-M 0.000 description 1
- OEIXGLMQZVLOQX-UHFFFAOYSA-N trimethyl-[3-(prop-2-enoylamino)propyl]azanium;chloride Chemical compound [Cl-].C[N+](C)(C)CCCNC(=O)C=C OEIXGLMQZVLOQX-UHFFFAOYSA-N 0.000 description 1
- 150000004072 triols Chemical class 0.000 description 1
- AAAQKTZKLRYKHR-UHFFFAOYSA-N triphenylmethane Chemical compound C1=CC=CC=C1C(C=1C=CC=CC=1)C1=CC=CC=C1 AAAQKTZKLRYKHR-UHFFFAOYSA-N 0.000 description 1
- VLOPEOIIELCUML-UHFFFAOYSA-L vanadium(2+);sulfate Chemical compound [V+2].[O-]S([O-])(=O)=O VLOPEOIIELCUML-UHFFFAOYSA-L 0.000 description 1
- MWOOGOJBHIARFG-UHFFFAOYSA-N vanillin Chemical compound COC1=CC(C=O)=CC=C1O MWOOGOJBHIARFG-UHFFFAOYSA-N 0.000 description 1
- 235000019871 vegetable fat Nutrition 0.000 description 1
- 229920002554 vinyl polymer Polymers 0.000 description 1
- 150000003722 vitamin derivatives Chemical class 0.000 description 1
- 239000007762 w/o emulsion Substances 0.000 description 1
- 239000001993 wax Substances 0.000 description 1
- PEAGNRWWSMMRPZ-UHFFFAOYSA-L woodstain scarlet Chemical compound [Na+].[Na+].OC1=CC=C2C=C(S([O-])(=O)=O)C=C(S([O-])(=O)=O)C2=C1N=NC(C=C1)=CC=C1N=NC1=CC=CC=C1 PEAGNRWWSMMRPZ-UHFFFAOYSA-L 0.000 description 1
- 229920001285 xanthan gum Polymers 0.000 description 1
- 235000010493 xanthan gum Nutrition 0.000 description 1
- 239000000230 xanthan gum Substances 0.000 description 1
- 229940082509 xanthan gum Drugs 0.000 description 1
- OIHZGFWAMWHYPA-UHFFFAOYSA-N xanthylium Chemical compound C1=CC=CC2=CC3=CC=CC=C3[O+]=C21 OIHZGFWAMWHYPA-UHFFFAOYSA-N 0.000 description 1
- 239000011701 zinc Chemical class 0.000 description 1
- 229910052725 zinc Chemical class 0.000 description 1
- PICXIOQBANWBIZ-UHFFFAOYSA-N zinc;1-oxidopyridine-2-thione Chemical compound [Zn+2].[O-]N1C=CC=CC1=S.[O-]N1C=CC=CC1=S PICXIOQBANWBIZ-UHFFFAOYSA-N 0.000 description 1
- 239000004711 α-olefin Substances 0.000 description 1
Classifications
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61Q—SPECIFIC USE OF COSMETICS OR SIMILAR TOILETRY PREPARATIONS
- A61Q5/00—Preparations for care of the hair
- A61Q5/06—Preparations for styling the hair, e.g. by temporary shaping or colouring
- A61Q5/065—Preparations for temporary colouring the hair, e.g. direct dyes
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01F—MIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
- B01F23/00—Mixing according to the phases to be mixed, e.g. dispersing or emulsifying
- B01F23/40—Mixing liquids with liquids; Emulsifying
- B01F23/45—Mixing liquids with liquids; Emulsifying using flow mixing
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01F—MIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
- B01F23/00—Mixing according to the phases to be mixed, e.g. dispersing or emulsifying
- B01F23/70—Pre-treatment of the materials to be mixed
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01F—MIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
- B01F23/00—Mixing according to the phases to be mixed, e.g. dispersing or emulsifying
- B01F23/70—Pre-treatment of the materials to be mixed
- B01F23/711—Heating materials, e.g. melting
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01F—MIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
- B01F25/00—Flow mixers; Mixers for falling materials, e.g. solid particles
- B01F25/40—Static mixers
- B01F25/42—Static mixers in which the mixing is affected by moving the components jointly in changing directions, e.g. in tubes provided with baffles or obstructions
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01F—MIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
- B01F35/00—Accessories for mixers; Auxiliary operations or auxiliary devices; Parts or details of general application
- B01F35/90—Heating or cooling systems
- B01F35/95—Heating or cooling systems using heated or cooled stirrers
Definitions
- the present invention relates to a process for the continuous industrial production of coloring agents for keratinic fibers.
- Oxidative hair dyes for professional use in hairdressing (so-called professional products) and home use (so-called retail products) are directly before the treatment of keratin fibers from a dye precursor-containing dyeing cream and an oxidizing agent-containing emulsion, the so-called developer emulsion , prepared.
- tints or temporary, washable dyeings creams which contain direct dyes. Such substantive dyes are also often included in oxidation hair dyes for shade.
- a commercially available dyeing cream contains several oxidation dye precursors and / or direct dyes, and within a commercial series, which includes some fifty and more nuances, vary the nature and amount of oxidation dye precursors and direct dyes.
- the dyeing creams which contain oxidation dye precursor (s) and / or substantive dyes are prepared batchwise in stirred kettles.
- This approach has the disadvantage that a predetermined amount is produced and changes in the amount needed (for example, for sale) result in either a post-production with a corresponding expense or an increase in waste when too much is produced.
- the present invention has for its object to develop a production process for dyes for keratinic fibers, which avoids the disadvantages mentioned.
- a quick change from one tinting cream (or shade) to the next should be able to occur without high amounts of waste.
- the cleaning effort should be minimized and the amount produced can be easily and quickly adapted to changing volume requirements.
- the present invention is a process for the continuous production of colorants for keratinic fibers containing at least one oxidation dye precursor and / or at least one direct dye, characterized in that
- At least one additional composition which comprises at least one oxidation dye precursor and / or at least one substantive dye is continuously fed to the mixing element via at least one additional metering unit,
- the process of the invention solves the above-mentioned problems in an elegant manner.
- the dye-free base composition and the dye-containing additive composition (s) allow product changes to be performed quickly, cost-effectively and without large amounts of waste.
- the entire process can be carried out under vacuum or inert gas so as to avoid contamination of the working environment.
- a base composition which is free of oxidation dye precursors and substantive dyes.
- This base composition also referred to hereinafter as the "cream base” is then fed continuously to a mixing element via a main metering unit.
- the preparation of the dye and dye precursor-free cream base can be done in different ways.
- the individual components of the cream base can be mixed in batches and then fed to the main dosing unit, but it is also possible and preferred, also the To produce cream base continuously.
- the individual ingredients of the base composition are described in detail below.
- the base composition is continuously fed to a mixing element via a main metering unit.
- This mixing element is supplied via one or preferably more waivedosierüen additional compositions containing dyes and / or dye precursors.
- the Mischelemet serves to combine a plurality of starting materials with different properties (in the present case of the base composition and at least one additional composition) and usually in different compositions to a new mixture.
- the aim is to achieve the highest possible homogeneity of the new substance mixture. That is, each sample reflects a composition that corresponds to the population.
- For the assessment of different mixing elements is also important that the mixing process takes place in the shortest possible time and reliably achieves a desired degree of homogeneity.
- the mixing element Since the basic composition and additional composition (s) do not spontaneously mix homogeneously, it is important that the mixing element brings as much relative movement into the material to be mixed.
- the mixing tools of the mixing element ideally then accelerate the ingredients of the mixed material so that the intensity and direction of the force input constantly change.
- dynamic mixers energy input through the apparatus
- static mixers energy input through the mix
- the mixing element is designed as a static mixer.
- Static mixers are used today in many areas of production. A characteristic feature of static mixers is that only the liquids or gases to be mixed are moved. In contrast to dynamic mixing systems, no stirring takes place, but pumps, blowers or compressors continuously convey the media to be mixed to the mixing tube, which is equipped with mixing elements.
- static mixers In the laminar flow range, static mixers, in contrast to pipelines, have a very good self-cleaning capacity. Since static mixers have no moving parts, the wear is minimal. Static mixers are usually pipes or channels with fixed internals, which cause the mixing of fluid product streams using the flow energy.
- static mixers Compared with mixers with agitated stirrers, static mixers often have a smaller chamber volume and a very low power requirement. Static mixers are closed systems that require neither maintenance nor inertization. The scale-up risk of static mixers is very low due to the strictly defined geometry and flow control. A prerequisite for the successful use of a static mixer is sufficient inlet pressure and constant metering of the components.
- Static mixers with holes consist of several interlocking elements, each offset by 90 °. At the joints creates a tetrahedron space, which is ever connected by four holes with the next. These holes are arranged so that the inside begin outside ends and vice versa. The elements are filled in a tube and are held at both ends by rings. The quality of the mixture is influenced by the number of mixing elements.
- the products to be mixed are pumped through the first element. With two components, one partial flow flows through the four holes and forms eight layers in the first tetrahedral space. These are shared by the next element in the other plane and form 32 layers at the end of the second block.
- Mixing elements of this type are easy to clean with removable elements. Since it does not include any moving parts, they are maintenance-free.
- the corrugated fins form open, intersecting channels. These mixing elements are used in the turbulent flow area. Without internals, a liquid needs about a length equal to 100 pipe diameters to mix. Due to the multiple redistribution, a good mixture after a few mixing elements, ie substantially shorter distances, can be achieved.
- the open, intersecting channels generate partial flows, of which in turn a partial flow into the intersecting channel is delivered. By displacing the individual mixing elements by 90 ° to each other inhomogeneities over the entire pipe cross-section are compensated. This achieves excellent cross-mixing, allowing for good mixing over short distances.
- each mixing element of the mixer consists of a framework of interlocking, intersecting webs.
- This static mixer causes the mixing effect by continuously splitting, expanding and relocating the components. Differences in concentration, temperature and speed are compensated.
- the mixing process takes place according to a geometric scheme, and the mixing effect remains constant even with throughput fluctuations. The pronounced cross-mixing and low axial backmixing ensure gentle product treatment.
- Static mixers in helical form are smooth tubes with fixed or loose built-in left and right rising spirals.
- the mixing element in a spiral shape leads the product flowing through against the pipe wall and back again.
- the mutual arrangement of right-handed and left-handed mixing element causes a rotation reversal and current division. This causes a complete and continuous mixing of the mix.
- the rotational flow is generated in predictable strength to achieve the desired mixing result.
- This mixing element is characterized by a smooth, simple shape and low pressure loss.
- an N-shaped mixing element is lined up in a geometrically offset manner in a tube.
- the geometric shape of the internals leads to a division and geometrically offset reunification of the material flows.
- the N-shape of the mixing element internals generates four partial streams which are involved in the mixing process at the same time and which are reunited in an offset manner. This creates an excellent cross-mixing effect; the axial mixing is low. Small amounts of additional components can be introduced via a centrally arranged seed tube.
- the mixing process can be carried out with comparatively low expenditure of mixing energy ... Short length with good mixing.
- Static mixers with heatable or coolable mixing elements are made of tubes analogous to the mixer arranged with interlocking webs.
- the pipes open into collectors, by which they can be heated and cooled.
- the mixer causes a continuous splitting and merging of the product stream. This creates a rearrangement that leads to mixing.
- the resulting pressure drop is applied by pumps.
- This mixing element allows intensive radial mixing with little axial backmixing.
- axial temperature profiles be driven. Because of the geometry and the possibility of cooling a gentle treatment of the material flow is ensured.
- the valve mixing section is a spring-loaded double valve.
- the gap between the seat and cone in comparison to the conditions in the smooth tube multiply higher flow velocities are generated.
- these currently increased flow velocities are immediately degraded again in an expansion space immediately following the gap, resulting in strong vortex fields that are used in vertical mixing sections for in-line dispersion of two or more phases.
- the standard design is the double-valve design.
- Dynamic mixers which are suitable in the process according to the invention are, for example, horizontal mixing shafts, single-shaft mixers, mixing vessels in trough or trough form, ribbon screw mixers, ribbon screw mixers, shear mixers, single-shaft paddle mixers, centrifugal mixers, turbulent mixers with residue-free discharge, mixing containers in tube form, Continuous single - shaft mixers (extruders), mixer kneaders, twin - shaft mixers, twin - shaft paddle mixers, multi - flow fluid mixers, twin - shaft mixing kneaders, kneading mixers with discharge screw, all - phase mixing / kneading machine, inlet and outlet mixers
- the mixing element has a volume of from 200 to 5000 ml, preferably from 500 to 4000 ml and in particular from 1000 to 2500 ml.
- the mixing element used in the method according to the invention is preferably a static mixer.
- processes according to the invention are preferred in which the ratio of the length of the mixing element to its diameter is 1: 1 to 100: 1, preferably 2: 1 to 50: 1 and in particular 3: 1 to 10: 1.
- the microstructure units are fine structure bodies which are composed of a plurality of elements stacked on top of each other, wherein the elements have close, channel-like openings of high dimensional accuracy, dimensional accuracy and surface quality.
- the elements may be metal foils with a thickness of 10 to 1000 ⁇ m.
- the average diameter of the channels is preferably at most 1000 .mu.m, particularly preferably 10 up to 1000 ⁇ m.
- Height and depth of the channels are preferably less than 1000 microns, more preferably less than 250 microns.
- the wall thickness between the channels and at the channel bottom is preferably less than 100 microns, more preferably less than 70 microns.
- a preferred micromixer preferably has at least 1000 microchannels and consists of a stack of films, each having a plurality of channels.
- the apparatus is designed so as to ensure an overall throughput of preferably at least 5 kg / h, particularly preferably at least 50 kg / h.
- the production method according to the invention is also suitable for the production of 100 kg / h up to 1000 kg / h and more, ie a daily production of 10 tons or more.
- Suitable micromixing elements have a plurality of over- and / or adjacent channels with a diameter of 10 to 1000 .mu.m, which can be arranged in several layers one above the other.
- the channels are flowed through by different phases to be mixed and the mixing takes place at the exit of the phases from the channels.
- the number of channels in the layers stacked on one another can be increased or the number of layers stacked on one another can be increased or a plurality of micromixers can be operated in a modular fashion connected in parallel. It is also possible to operate two or more micromixers connected in series one behind the other. It is particularly advantageous if a coarser premix is first produced with a micromixer having larger channel diameters and subsequent micromixers have increasingly smaller channel diameters.
- heating and / or cooling preferably takes place by passage through at least one micro-heat exchanger.
- the micro-heat exchanger consists of a plurality of over- and / or juxtaposed channels with diameters of preferably 10 to 10,000 microns.
- spatially adjacent channels are alternately flowed through by one of the phases to be mixed or by the mixed preparation on the one hand and a heat transfer medium on the other hand.
- the homogenized composition can be filled directly into the final packaging units, and the use of an intermediate buffer (buffer storage) is possible and preferred. If the mixing was carried out with heating, the homogenized composition is preferably cooled before being filled into the final packaging or the intermediate store, which is preferably carried out by passage through a micro-heat exchanger, wherein the heat removed can be returned to the manufacturing process.
- an intermediate buffer buffer storage
- a base composition (cream base without dyes and dye precursors) is continuously fed to a mixing element via a main metering unit.
- This mixing element is supplied via one or preferably more waivedosiericaen additional compositions containing dyes and / or dye precursors.
- Particularly preferred methods according to the invention are characterized in that a plurality of additional compositions are fed via a plurality of additional metering units, wherein methods with 3, 4, 5, 6, 7, 8, 9, 10, 11 and 12 additional compositions which are metered via a separate additional metering unit , are preferred.
- compositions can be formulated, each containing different dyes or dye precursors.
- different dye preparations which are all based on the same cream base but produce different hues (shades) on coloration.
- the process according to the invention also makes possible the additional addition of further additional compositions which do not necessarily have to contain dyes and / or dye precursors.
- Preferred processes according to the invention are therefore characterized in that additionally at least one further dye and dye precursor-free additional composition is continuously fed to the mixing element via at least one additional metering unit.
- This variant of the method according to the invention is particularly suitable when the additional composition contains volatile and / or sensitive ingredients.
- the dosage of ammonia is a problem in conventional H 11 first method, because accurate dosage because of possible losses to the environment has been difficult to achieve.
- the separate metered addition of an additive composition having a defined ammonia content therefore further increases the process economy and safety of the process according to the invention.
- the change from alkaline to low-alkaline dyeing compositions for keratin fibers is particularly easy by varying the added amount of additional ammonia composition.
- the dye and dye precursor-free additive composition contains ammonia, preferred preferred compositions containing, by weight, from 0.1 to 10% by weight, preferably from 0.25 to 5% by weight. and in particular from 0.5 to 2.5% by weight of ammonia (in each case calculated as 100% NH 3 ).
- fragrance (s) and preservatives can also be metered in particularly without having to contain dyes or precursors in these additional compositions.
- dye and dye precursor-free additional composition contains perfume and / or preservatives are preferred according to the invention. It may be preferable to prepare coloring agents for keratinic fibers containing reducing agents. In this case, the separate dosage of reducing agents in the process flow is preferred.
- the dye and dye precursor-free additive composition contains reducing agents, preferred preferred compositions containing reducing agents which are at 25 ° C .; 10 5 Pa pressure, pH 7, in 1 molar aqueous solution have a redox potential ⁇ -0.42 V and particularly preferred reducing agent is / are selected from the group sodium sulfite / sodium metabisulfite, sodium dithionite, ascorbic acid or salts thereof.
- a base composition (cream base without dyes and dye precursors) is continuously fed to a mixing element via a main metering unit.
- This feeding can be carried out by conventional methods of conveying flowable media, for example by pumping, screw conveyor, by gravity etc. has proven particularly in terms of the consistency of the cream base a Kolbehubdosierer, since the delivery pressure and flow rate particularly well with the later to be filled volumes and Packaging harmonize.
- the main metering unit is designed as a Kolbehubdosierer, with preferred flow rates 10 to 1000 ml / stroke, preferably 50 to 500 ml / stroke and in particular 150 to 350 ml / stroke.
- the Rajdosierüen for the additional compositions are designed as Kolbehubdosierer.
- the flow rates can be selected lower, for example, be preferred flow rates 5 to 200 ml / stroke, preferably 10 to 150 ml / stroke and in particular 20 to 100 ml / stroke.
- the modular design of the apparatus for the method according to the invention makes it possible to temper parts of the system or the entire system.
- the increase in temperature thereby promotes mixing and generally reduces the viscosity, while cooling may be indicated when the mixture is heated by the mixing process or by reactions of the components.
- Preferred methods of the invention are characterized in that at least one additive composition prior to dosing to temperatures of 10 to 80 0 C, preferably is heated from 12 to 70 0 C, particularly preferably 15 to 65 ° C and especially 20 to 50 0 C.
- the mixing element can also be tempered (see above in the description of the mixing elements).
- inventive methods are preferred in which the mixing element to temperatures of 10 to 80 0 C, preferably 12 to 70 0 C, more preferably 15 to 65 ° C and in particular 20 to 50 0 tempered C.
- the base composition may also be tempered.
- Corresponding processes of the invention are then characterized in that the base composition before metering to temperatures of 10 to 80 0 C, preferably 12 to 70 0 C, more preferably 15 to 65 ° C and in particular 20 to 50 0 tempered C.
- the dyeing agent can be transferred directly after the mixing process into a filling plant, where it is filled into suitable containers, preferably tubes, and sealed.
- suitable containers preferably tubes, and sealed.
- Preferred processes according to the invention are characterized in that the colorant obtained by mixing the base composition and additional composition (s) is transferred before filling into a buffer store (intermediate buffer) whose volume is preferably 5 to 50 liters, particularly preferably 7.5 to 35 liters and in particular 10 to 20 liters.
- a buffer store intermediate buffer
- One of the particular advantages of the method according to the invention is the possibility of being able to work without protective substance losses and without technical problems under a protective gas atmosphere. As a result, sensitive components of the dyeing compositions are spared and unwanted side reactions avoided before the application of the colorant.
- Preferred processes according to the invention are characterized in that the base and additional composition (s) are provided and metered under a protective gas atmosphere.
- the base composition has a pasty consistency. This facilitates the subsequent consumer's dosage and mixing with the developer emulsion (the oxidizing agent), which is usually packaged separately as a liquid.
- the developer emulsion the oxidizing agent
- the viscosity of the base composition is one of the factors that influence the smooth continuous implementation of the method according to the invention.
- the base composition (20 0 C, Haake VT 550 MV2) has a viscosity of 0.1 to 1000 Pas, preferably from 1 to 500 Pas and in particular from 25 to 250 Pas, according to the invention are particularly preferred.
- 0.03781 30 200 - 1000 preferably 400 to 900, in particular 600 to 800
- 1, 506 66.37 10-200 preferably 20 to 100, in particular 30 to 80
- the density and pH of the base composition are preferably within narrower ranges.
- Particularly preferred methods according to the invention are characterized in that the base composition having a density (20 0 C) of 0.8 to 1, 2 gcm -3, preferably from 0.9 to 1, 1 preferably 3 and in particular from 0.94 to 1, preferably 3 , and in terms of the pH, methods according to the invention are preferred in which the base composition has a pH of> 7, preferably> 7.5, more preferred > 8 and in particular> 8.5.
- the agents for dyeing keratinic fibers prepared by means of the process according to the invention may contain all active ingredients, additives and auxiliaries known for such preparations. Some of these ingredients can only be in the means of the additional composition (s) (dyes or dye precursors), while other ingredients may be both part of the cream base and part of the additional composition (s). As far as is hereinafter referred to as "colorant” or “agent”, the respective ingredient may be both part of the cream base and part of the additional composition (s).
- dyes or dye precursors which can enter the means exclusively via the additional composition (s) are described below.
- the colorants contain at least one surfactant, wherein in principle both anionic and zwitterionic, ampholytic, nonionic and cationic surfactants are suitable. In many cases, however, it has proved to be advantageous to select the surfactants from anionic, zwitterionic or nonionic surfactants.
- Suitable anionic surfactants and emulsifiers for the compositions produced by the process according to the invention are all anionic surfactants suitable for use on the human body. These are characterized by a water-solubilizing, anionic group such as. As a carboxylate, sulfate, sulfonate or phosphate group and a lipophilic alkyl group having about 8 to 30 carbon atoms. In addition, glycol or polyglycol ether groups, ester, ether and amide groups and hydroxyl groups may be present in the molecule.
- anionic surfactants and emulsifiers are, in each case in the form of the sodium, potassium and ammonium as well as the mono-, di- and trialkanolammonium salts having 2 to 4 C atoms in the alkanol group, linear and branched fatty acids having 8 to 30 ° C Atoms (soaps),
- Acyl isethionates having 8 to 24 carbon atoms in the acyl group linear alkanesulfonates having 8 to 24 carbon atoms, linear alpha-olefin sulfonates having 8 to 24 carbon atoms,
- R 1 CO is a linear or branched acyl radical having 6 to 22 carbon atoms and 0, 1, 2 or 3 double bonds and X is hydrogen, an alkali and / or alkaline earth metal, ammonium, alkylammonium, alkanolammonium or glucammonium
- X is H or a -CH 2 COOR group
- Y is H or -OH, under the condition that Y is H when X-CH 2 COOR
- R, R 1 and R 2 are independently Hydrogen atom, an alkali or alkaline earth metal cation, an ammonium group, the cation of an ammonium organic base or a radical Z derived from a polyhydroxylated organic compound selected from the group of etherified (C 6 -C 8 ) alkyl polysaccharides having 1 to 6 monomers Saccharide units and / or the etherified aliphatic (C 6 -C 6 ) -hydroxyalkylpolyols having 2 to 16 hydroxyl radicals, with the proviso that at least one of the groups R, R 1 or R 2 is a radical Z, esters of sulfosuccinic acid or Sulfosuccinates of the general formula (III),
- Sulfosuccinic monoalkylpolyoxyethyl esters having 8 to 24 carbon atoms in the alkyl group and 1 to 6 oxyethyl groups
- Alkyl sulfates and alkyl polyglycol ether sulfates of the formula R- (O-CH 2 -CH 2 ) X -OSO 3 H, in which R is a preferably linear alkyl group of 8 to 30 carbon atoms and x 0 or 1 to 12, mixed hydroxysulfonate surfactants according to DE-A-37 25 030,
- esters of tartaric acid and citric acid with alcohols the addition products of about 2-15
- Molecules of ethylene oxide and / or propylene oxide at C 8 Represent 22 fatty alcohols
- Monoglyceride sulfates and monoglyceride ether sulfates Monoglyceride sulfates and monoglyceride ether sulfates.
- Preferred anionic surfactants and emulsifiers are acyl glutamates, acyl isethionates, acyl sarcosinates and acyl taurates, each having a linear or branched acyl radical having 6 to 22 carbon atoms and 0, 1, 2 or 3 double bonds, which in particularly preferred embodiments of an octanoyl, decanoyl, lauroyl , Myristoyl, palmitoyl and stearoyl radical, esters of tartaric acid, citric acid or succinic acid or the salts of these acids with alkylated glucose, in particular the products with the INCI name Disodium Coco-Glucoside Citrate, Sodium Coco-Glucoside Tartrate and Disodium Coco-glucosides sulfosuccinates, alkyl polyglycol ether sulfates and ether carboxylic acids having 8 to 18 carbon atoms in the alkyl group and up to 12 ethoxy groups in the
- Zwitterionic surfactants and emulsifiers are those surface-active compounds which carry at least one quaternary ammonium group and at least one -COO () or -SO 3 ⁇ group in the molecule.
- Particularly suitable zwitterionic surfactants and emulsifiers are the so-called betaines such as N-alkyl-N, N-dimethylammonium glycinates, for example cocoalkyldimethylammonium glycinate, N-acylaminopropyl-N, N-dimethylammonium glycinates, for example cocoacylaminopropyldimethylammonium glycinate, and 2-alkyl-3 carboxymethyl-3-hydroxyethyl imidazolines having in each case 8 to 18 carbon atoms in the alkyl or acyl group and the coco acylaminoethylhydroxyethyl carboxymethyl glycinate.
- a preferred zwitterionic surfactant is
- Ampholytic surfactants and emulsifiers are understood as meaning those surface-active compounds which, apart from a C 8 -C 24 -alkyl or -acyl group, contain at least one free amino group and at least one -COOH or -SO 3 H group and are capable of forming internal salts
- suitable ampholytic surfactants are N-alkylglycines, N-alkylaminopropionic acids, N-alkylaminobutyric acids, N-alkyliminodipropionic acids, N-hydroxyethyl-N-alkylamidopropylglycines, N-alkyltaurines, N-alkylsarcosines, 2-alkylaminopropionic acids and alkylaminoacetic acids each having about 8 to 24 C Atoms in the alkyl group.
- Particularly preferred ampholytic surfactants are N-cocoalkylaminopropionate, cocoacylaminoethylaminopropionate and
- Nonionic surfactants and emulsifiers contain as hydrophilic group z.
- Such compounds are, for example
- Alkylphenols having 8 to 15 C atoms in the alkyl group having 8 to 15 C atoms in the alkyl group
- Polyols having 3 to 6 carbon atoms in particular glycerol,
- Polyol fatty (partial) ester as Hydagen ® HSP (Cognis) or Sovermol ® - types (Cognis), especially of saturated C. 8 3 o-fatty acids, alkoxylated triglycerides, alkoxylated fatty acid alkyl esters,
- R consists essentially of C 8 and C 10 -alkyl groups, essentially of C 12 and C 14 -alkyl groups, essentially of C 8 - to C 16 -alkyl groups or essentially of C 12 - To C 16 alkyl groups or consists essentially of C 16 to C 18 alkyl groups.
- sugar building block Z it is possible to use any desired mono- or oligosaccharides.
- sugars with 5 or 6 carbon atoms and the corresponding oligosaccharides are used.
- Such sugars are, for example, glucose, fructose, galactose, arabinose, ribose, xylose, lyxose, allose, altrose, mannose, gulose, idose, talose and sucrose.
- Preferred sugar building blocks are glucose, fructose, galactose, arabinose and sucrose; Glucose is particularly preferred.
- the alkylpolyglycosides which can be used according to the invention contain on average 1, 1 to 5 sugar units. Alkyl polyglycosides having x values of 1.1 to 2.0 are preferred. Very particular preference is given to alkyl glycosides in which x is 1: 1 to 1, 8.
- alkyl (oligo) glucosides and fatty alcohols eg. B. Montanov ® 68
- Sterols e.g. Ergosterol, stigmasterol, sitosterol and mycosterols
- Phospholipids e.g. B. lecithins or phosphatidylcholines
- Polyglycerols and polyglycerol derivatives such as polyglycerol poly-12-hydroxystearate
- Preferred nonionic surface-active substances have been the alkylpolyglycosides, optionally in admixture with fatty alcohols, alkoxylated polydialkylsiloxanes, alkylene oxide amide products of saturated linear fatty alcohols and fatty acids with 2 to 30 moles of ethylene oxide per mole of fatty alcohol or fatty acid.
- cationic surfactants of the quaternary ammonium compound type are ammonium halides, in particular chlorides and bromides, such as alkyltrimethylammonium chlorides, dialkyldimethylammonium chlorides and trialkylmethylammonium chlorides.
- the long alkyl chains of these surfactants preferably have 10 to 18 carbon atoms, such as.
- cetyltrimethylammonium chloride stearyltrimethylammonium chloride, distearyldimethylammonium chloride, lauryldimethylammonium chloride, lauryldimethylbenzylammonium chloride and triceptylmethylammonium chloride.
- Further preferred cationic surfactants are the imidazolium compounds known under the INCI names Quaternium-27 and Quaternium-83.
- base compositions the fatty alcohol (s) and / or fatty alcohol alkoxylate (s), preferably C 2-22 fatty alcohol (s) and / or C 2-22 fatty alcohol ethoxylate (s) having 10 to 30 EO units, especially preferably Ci 6 -i 8 fatty alcohol (s) and / or Ci 6- i 8 - fatty alcohol ethoxylate (s) having 12 to 20 EO units, preferably in amounts of 5 to 20 wt .-%, preferably from 7.5 to 17.5 wt .-% and in particular from 10 to 15 wt .-%, each based on the weight of Basisameammenage included.
- the agents produced by the process according to the invention may contain emulsifiers (F).
- Emulsifiers effect at the phase interface the formation of water- or oil-stable adsorption layers, which protect the dispersed droplets against coalescence and thus stabilize the emulsion.
- Emulsifiers are therefore constructed like surfactants from a hydrophobic and a hydrophilic part of the molecule. Hydrophilic emulsifiers preferably form O / W emulsions and hydrophobic emulsifiers preferably form W / O emulsions.
- An emulsion is to be understood as meaning a droplet-like distribution (dispersion) of a liquid in another liquid under the expense of energy in order to create stabilizing phase interfaces by means of surfactants.
- the selection of these emulsifying surfactants or emulsifiers depends on the substances to be dispersed and the respective outer phase and the fineness of the emulsion.
- Emulsifiers which can be used according to the invention are, for example Addition products of 4 to 30 moles of ethylene oxide and / or 0 to 5 moles of propylene oxide to linear fatty alcohols having 8 to 22 carbon atoms, to fatty acids having 12 to 22 carbon atoms and to alkylphenols having 8 to 15 carbon atoms in the alkyl group,
- Glucosides mixtures of alkyl (oligo) and fatty alcohols for example, the commercially available product ® Montanov 68,
- Sterols are understood to mean a group of steroids which have a hydroxyl group on C-atom 3 of the steroid skeleton and are isolated both from animal tissue (zoosterols) and from vegetable fats (phytosterols). Examples of zoosterols are cholesterol and lanosterol. Examples of suitable phytosterols are ergosterol, stigmasterol and sitosterol. Mushrooms and yeasts are also used to isolate sterols, the so-called mycosterols. Phospholipids. Of these, especially the glucose phospholipids, e.g. as lecithins or phosphatidylcholines from e.g. Egg yolk or plant seeds (e.g., soybeans) are understood.
- Fatty acid esters of sugars and sugar alcohols such as sorbitol
- Polyglycerols and polyglycerol derivatives such as polyglycerol poly-12-hydroxystearate (commercial product Dehymuls ® PGPH),
- Linear and branched fatty acids with 8 to 30 C atoms and their Na, K, ammonium, Ca, Mg and Zn salts.
- the agents prepared by the process according to the invention preferably contain the emulsifiers in amounts of 0.1-25% by weight, in particular 0.5-15% by weight, based on the total agent.
- compositions produced by means of the process according to the invention may preferably contain at least one nonionic emulsifier having an HLB value of 8 to 18.
- Nonionic emulsifiers having an HLB value of 10 to 15 may be particularly preferred according to the invention.
- polymers (G) are contained in the compositions prepared by the process according to the invention.
- polymers made by the process of this invention have been added, with both cationic, anionic, amphoteric and nonionic polymers being found to be effective.
- Cationic or amphoteric polymers are preferably usable according to the invention.
- Cationic or amphoteric polymers are to be understood as meaning polymers which have a group in the main and / or side chain which may be “temporary” or “permanent” cationic.
- "permanently cationic” refers to those polymers which have a cationic group, irrespective of the pH of the agent. These are usually polymers containing a quaternary nitrogen atom, for example in the form of an ammonium group.
- Preferred cationic groups are quaternary ammonium groups.
- those polymers in which the quaternary ammonium group is bonded via a C 1-4 hydrocarbon group to a polymer main chain constructed from acrylic acid, methacrylic acid or derivatives thereof have proven to be particularly suitable.
- R 1 -H or -CH 3
- R 2 , R 3 and R 4 are independently selected from C 1-4 -alkyl, -alkenyl or -hydroxyalkyl groups
- m 1, 2, 3 or 4
- n is a natural number
- X ' is a physiologically acceptable organic or inorganic anion, as well as copolymers consisting essentially of the monomer units listed in formula (G1-I) and nonionic monomer units, are particularly preferred cationic polymers.
- R 1 is a methyl group
- R 2 , R 3 and R 4 are methyl groups m has the value 2.
- Suitable physiologically tolerated counterions X " are, for example, halide ions, sulfate ions, phosphate ions, methosulfate ions and organic ions such as lactate, citrate, tartrate and acetate ions, preference being given to halide ions, in particular chloride.
- a particularly suitable homopolymer is, if desired, crosslinked, poly (methacryloyloxyethyltrimethylammonium chloride) with the INCI name Polyquaternium-37.
- poly methacryloyloxyethyltrimethylammonium chloride
- Synthalen® ® CR Ethnichem
- the crosslinking can be carried out with the aid of poly olefinically unsaturated compounds, for example divinylbenzene, tetraallyloxyethane, methylenebisacrylamide, diallyl ether, polyallylpolyglyceryl ethers, or allyl ethers of sugars or sugar derivatives such as erythritol, pentaerythritol, arabitol, mannitol, sorbitol, sucrose or glucose.
- Methylenebisacrylamide is a preferred crosslinking agent.
- the homopolymer is preferably used in the form of a nonaqueous polymer dispersion which should not have a polymer content of less than 30% by weight.
- Such polymer dispersions are (under the names Salcare ® SC 95 about 50% polymer content, additional components: mineral oil (INCI name: Mineral Oil) and tridecyl-polyoxypropylene-polyoxyethylene-ether (INCI name: PPG-1 trideceth-6) ) and Salcare ® SC 96 (about 50% polymer content, additional components: mixture of diesters of propylene glycol with a mixture of caprylic and capric acid (INCI name: propylene glycol Dicaprylate / Dicaprate) and tridecyl polyoxypropylene-polyoxyethylene-ether (INCI Designation: PPG-1-trideceth-6)) are commercially available.
- Copolymers having monomer units of the formula (G1-I) contain, as nonionic monomer units, preferably acrylamide, methacrylamide, acrylic acid C 1 -4 -alkyl esters and methacrylic acid C 1. 4- alkyl esters. Among these nonionic monomers, the acrylamide is particularly preferred. These copolymers can also be crosslinked, as described above in the case of the homopolymers. A copolymer preferred according to the invention is the crosslinked acrylamide-methacryloyloxyethyltrimethylammonium chloride copolymer. Such copolymers in which the monomers are present in a weight ratio of about 20:80, are commercially available as approximately 50% non-aqueous polymer dispersion 92 under the name Salcare ® SC.
- quaternized cellulose derivatives such as are available under the names of Celquat ® and Polymer JR ® commercially.
- the compounds Celquat ® H 100, Celquat ® L 200 and Polymer JR ® 400 are preferred quaternized cellulose derivatives, cationic alkyl polyglycosides according to DE-PS 44 13 686, cationized honey, for example the commercial product Honeyquat ® 50, cationic guar derivatives, such as in particular the products sold under the trade name Cosmedia guar ® and Jaguar ® products, polymeric dimethyldiallylammonium salts and their copolymers with esters and amides of acrylic acid and methacrylic acid.
- Merquat ® 100 Poly (dimethyldiallylammonium chloride)
- Merquat ® 550 dimethyldiallylammonium chloride
- Acrylamide copolymer commercially available products are examples of such cationic polymers, Copolymers of vinylpyrrolidone with quaternized derivatives of dialkylaminoalkyl acrylate and methacrylate, such as diethyl sulfate quaternized vinylpyrrolidone-dimethylaminoethyl methacrylate copolymers. Such compounds are sold under the names Gafquat ® 734 and Gafquat ® 755 commercially,
- Vinylpyrrolidone-vinyl imidazolium copolymers such as those offered under the names Luviquat ® FC 370, FC 550, FC 905 and HM 552, quaternized polyvinyl alcohol, as well as by the names of Polyquaternium 2, Polyquaternium 17, Polyquaternium 18 and Polyquaternium 27, having quaternary Nitrogen atoms in the polymer backbone.
- Can be used as cationic polymers are sold under the names Polyquaternium-24 (commercial product z. B. Quatrisoft ® LM 200), known polymers.
- Gaffix ® VC 713 manufactured by ISP:
- the copolymers of vinylpyrrolidone such as the commercial products Copolymer 845 (ISP manufacturer) are Gafquat ® ASCP 1011, Gafquat ® HS 110, Luviquat ® 8155 and Luviquat ® MS 370 available are.
- the agents according to the invention can also contain amphoteric polymers. These additionally have at least one negatively charged group in the molecule and are also referred to as zwitterionic polymers. In the context of the present invention, preferably usable zwitterionic polymers are composed essentially together
- R 1 -CH CR 2 -CO-Z- (C n H 2n ) -N ( + ) R 3 R 4 R 5 A ⁇ " ) ( Z ⁇ ')
- R and R independently of one another are hydrogen or a methyl group and R, R 1 and R 4 independently of one another are alkyl groups having 1 to 4 carbon atoms, Z is an NH 3
- n is an integer from 2 to 5 and A "is the anion of an organic or inorganic acid
- R 6 -CH CR 7 -COOH (Z-II) in which R "and R 7 are independently hydrogen or methyl groups.
- Suitable starting monomers are, for. Dimethylaminoethylacrylamide,
- the monomers containing a tertiary amino group are then quaternized in a known manner, methyl chloride, dimethyl sulfate or diethyl sulfate being particularly suitable as alkylating reagents.
- the quaternization reaction can be carried out in aqueous solution or in the solvent.
- such monomers of formula (Z-I) will be the derivatives of acrylamide or methacrylamide. Preference is furthermore given to those monomers which contain halide, methoxysulfate or ethoxysulfate ions as counterions. Likewise preferred are those
- the acrylamidopropyltrimethylammonium chloride is a most preferred monomer of formula (Z-I).
- Suitable monomeric carboxylic acids of the formula (Z-II) are acrylic acid, methacrylic acid, crotonic acid and 2-methylcrotonic acid. Preference is given to using acrylic or methacrylic acid, in particular acrylic acid.
- the zwitterionic polymers which can be used according to the invention are prepared from monomers of the formulas (ZI) and (Z-II) by polymerization processes known per se.
- the polymerization can be carried out either in aqueous or aqueous-alcoholic solution.
- the alcohols used are alcohols having 1 to 4 carbon atoms, preferably isopropanol, which simultaneously serve as polymerization regulators.
- other components than regulators may also be added to the monomer solution, eg.
- formic acid or mercaptans such as thioethanol and thioglycolic acid.
- the initiation of the polymerization takes place with the aid of free-radical-forming substances.
- redox systems and / or thermally decomposing radical formers of the azo compound type such.
- azoisobutyronitrile azo-bis (cyanopentanoic acid) or azo-bis (amidinopropane) dihydrochloride can be used.
- redox systems are z. B. combinations of hydrogen peroxide, potassium or ammonium peroxodisulfate and tertiary butyl hydroperoxide with sodium sulfite, sodium dithionite or hydroxylamine hydrochloride as a reduction component.
- the polymerization can be carried out isothermally or under adiabatic conditions, depending on the concentration ratios by the heat of polymerization released, the temperature range for the course of the reaction between 20 and 200 0 C may vary, and the reaction may optionally be carried out under autogenous pressure.
- the reaction temperature is between 20 and 100 0 C.
- the pH during the copolymerization may vary within a wide range.
- polymerization is carried out at low pH values; however, pH values above the neutral point are also possible.
- an aqueous base for. As sodium hydroxide, potassium hydroxide or ammonia, to a pH between 5 and 10, preferably 6 to 8 set. Further details of the polymerization process can be found in the examples.
- the cationic or amphoteric polymers are contained in the compositions prepared by the process according to the invention preferably in amounts of 0.05 to 10 wt .-%, based on the total agent. Amounts of 0.1 to 5 wt .-% are particularly preferred.
- the anionic polymers (G2) are anionic polymers which have carboxylate and / or sulfonate groups.
- anionic monomers from which such polymers may consist are acrylic acid, methacrylic acid, crotonic acid, maleic anhydride and 2-acrylamido-2-methylpropanesulfonic acid.
- the acidic groups may be wholly or partly present as sodium, potassium, ammonium, mono- or triethanolammonium salt.
- Preferred monomers are 2-acrylamido-2-methylpropanesulfonic acid and acrylic acid.
- Anionic polymers which contain 2-acrylamido-2-methylpropanesulfonic acid as the sole or co-monomer can be found to be particularly effective, it being possible for the sulfonic acid group to be wholly or partly present as sodium, potassium, ammonium, mono- or triethanolammonium salt ,
- the homopolymer of 2-acrylamido-2-methyl propane sulfonic acid which is available for example under the name Rheothik ® 11-80 is commercially.
- copolymers of at least one anionic monomer and at least one nonionic monomer may be preferable to use copolymers of at least one anionic monomer and at least one nonionic monomer.
- anionic monomers reference is made to the substances listed above.
- preferred Nonionic monomers are acrylamide, methacrylamide, acrylic esters, methacrylic acid esters, vinylpyrrolidone, vinyl ethers and vinyl esters.
- Preferred anionic copolymers are acrylic acid-acrylamide copolymers and in particular polyacrylamide copolymers with sulfonic acid-containing monomers.
- a particularly preferred anionic copolymer consists of 70 to 55 mol% of acrylamide and 30 to 45 mol% of 2-acrylamido-2-methylpropanesulfonic acid, wherein the sulfonic acid group is wholly or partly in the form of sodium, potassium, ammonium, mono- or triethanolammonium Salt is present.
- This copolymer may also be crosslinked, with crosslinking agents preferably polyolefinically unsaturated compounds such as tetraallyloxyethane, allylsucrose, allylpentaerythritol and methylene-bisacrylamide are used.
- crosslinking agents preferably polyolefinically unsaturated compounds such as tetraallyloxyethane, allylsucrose, allylpentaerythritol and methylene-bisacrylamide are used.
- crosslinking agents preferably polyolefinically unsaturated compounds such as tetraallyloxyethane, allylsucrose, allylpentaerythritol and methylene-bisacrylamide are used.
- Such a polymer is contained in the commercial product Sepigel ® 305 from SEPPIC.
- Simulgel ® 600 as a compound with isohexadecane and polysorbate-80 Natriumacryloyldimethyltaurat copolymers have proved to be particularly effective according to the invention.
- anionic homopolymers are uncrosslinked and crosslinked polyacrylic acids. Allyl ethers of pentaerythritol, sucrose and propylene may be preferred crosslinking agents. Such compounds are for example available under the trademark Carbopol ® commercially.
- Copolymers of maleic anhydride and methyl vinyl ether, especially those with crosslinks, are also color-retaining polymers.
- a 1, 9-decadiene crosslinked maleic acid methyl vinyl ether copolymer is available under the name Stabileze® ® QM.
- the agents produced by means of the process according to the invention may contain nonionic polymers (G4) in another embodiment.
- Suitable nonionic polymers are, for example:
- Vinylpyrrolidone / vinyl ester copolymers as sold, for example, under the trademark Luviskol ® (BASF).
- Luviskol ® VA 64 and Luviskol ® VA 73, each vinylpyrrolidone / vinyl acetate copolymers, are also preferred nonionic polymers.
- Cellulose ethers such as hydroxypropyl cellulose, hydroxyethyl cellulose and hydroxypropylcellulose Methylhy-, as sold for example under the trademark Culminal® ® and Benecel ® (AQUALON) and Natrosol ® grades (Hercules).
- Starch and its derivatives in particular starch, such as Structure XL ® (National Starch), a multifunctional, salt-tolerant starch; shellac Polyvinylpyrrolidones, as sold for example under the name Luviskol ® (BASF).
- starch such as Structure XL ® (National Starch), a multifunctional, salt-tolerant starch; shellac Polyvinylpyrrolidones, as sold for example under the name Luviskol ® (BASF).
- Siloxanes These siloxanes can be both water-soluble and water-insoluble. Both volatile and nonvolatile siloxanes are suitable, nonvolatile siloxanes being understood as meaning those compounds whose boiling point is above 200 ° C. under normal pressure.
- Preferred siloxanes are polydialkylsiloxanes, such as, for example, polydimethylsiloxane, polyalkylarylsiloxanes, for example polyphenylmethylsiloxane, ethoxylated polydialkylsiloxanes and polydialkylsiloxanes which contain amine and / or hydroxyl groups. Glycosidically substituted silicones.
- the preparations comprise a plurality of, in particular two, different polymers of the same charge and / or in each case an ionic and an amphoteric and / or nonionic polymer.
- the polymers (G) are preferably contained in the compositions prepared by the process according to the invention in amounts of 0.05 to 10 wt .-%, based on the total agent. Amounts of 0.1 to 5, in particular from 0.1 to 3 wt .-%, are particularly preferred.
- an agent produced by means of the method according to the invention may also contain UV filters (I).
- the UV filters to be used according to the invention are not subject to any general restrictions with regard to their structure and their physical properties. On the contrary, all UV filters which can be used in the cosmetics sector and whose absorption maximum lies in the UVA (315-400 nm), in the UVB (280-315 nm) or in the UVC ( ⁇ 280 nm) range are suitable. UV filters with an absorption maximum in the UVB range, in particular in the range from about 280 to about 300 nm, are particularly preferred.
- the UV filters used according to the invention can be selected, for example, from substituted benzophenones, p-aminobenzoic acid esters, diphenylacrylic acid esters, cinnamic acid esters, salicylic acid esters, benzimidazoles and o-aminobenzoic acid esters.
- UV filters which can be used according to the invention are 4-aminobenzoic acid, N, N, N-trimethyl-4- (2-oxoborn-3-ylidenemethyl) aniline methylsulfate, 3,3,5-trimethylcyclohexyl salicylate (homosalates), 2-hydroxy-4-methoxy-benzophenone (benzophenone-3; Uvinul ® M 40, Uvasorb MET ®, ® Neo Heliopan BB, Eusolex ® 4360), 2-phenylbenzimidazole-5-sulfonic acid and potassium, sodium and triethanolamine salts ( Phenylbenzimidazole Sulfonic Acid; Parsol ® HS; Neo Heliopan Hydro ®), 3,3 '- (1, 4- phenylenedimethylene) bis (7,7-dimethyl-2-oxo-bicyclo [2.2.1] hept-1- yl-methane sulfonic acid) and salts thereof, 1- (4-tert-butyl
- A-aminobenzoic acid N, N, N-trimethyl-4- (2-oxoborn-3-ylidenemethyl) aniline methylsulfate, 3,3,5-trimethylcyclohexylsalicylate, 2-hydroxy-4-methoxybenzophenone , 2-phenylbenzimidazole-5-sulfonic acid and its potassium, sodium and triethanolamine salts, 3,3 '- (1, 4-phenylenedimethylene) - bis (7,7-dimethyl-2-oxo-bicyclo- [2.2.1] hept-1-yl-methanesulfonic acid) and its salts, 1- (4-tert-butylphenyl) -3- (4-methoxyphenyl) -propane-1,3-dione, ⁇ - (2-oxoborn-3-yl) yliden) -toluene-4-sulfonic acid and its salts, ethoxylated 4-aminobenzo
- water-insoluble UV filters are those which dissolve in water at not more than 1% by weight, in particular not more than 0.1% by weight, at 20 ° C. Furthermore, these compounds should be soluble in the usual cosmetic oil components at room temperature to at least 0.1, in particular at least 1 wt .-%).
- the use of water-insoluble UV filters may therefore be preferred according to the invention. According to a further embodiment of the invention, preference is given to those UV filters which have a cationic group, in particular a quaternary ammonium group.
- UV filters have the general structure U - Q.
- the structural part U stands for a UV-absorbing group.
- This group can in principle be derived from the known UV filters which can be used in the cosmetics sector, in which a group, generally a hydrogen atom, of the UV filter is replaced by a cationic group Q, in particular having a quaternary amino function ,
- Compounds from which the structural part U can be derived are, for example, substituted benzophenones, p-aminobenzoic acid esters,
- Structural parts U which are derived from cinnamic acid amide or from N, N-dimethylaminobenzoic acid amide are preferred according to the invention.
- the structural parts U can in principle be selected such that the absorption maximum of the UV filters can be in both the UVA (315-400 nm) and in the UVB (280-315 nm) or in the UVC ( ⁇ 280 nm) range. UV filters with an absorption maximum in the UVB range, in particular in the range from about 280 to about 300 nm, are particularly preferred.
- the structural part U also as a function of structural part Q, is preferably selected so that the molar extinction coefficient of the UV filter at the absorption maximum is above 15,000, in particular above 20,000.
- the structural part Q preferably contains, as a cationic group, a quaternary ammonium group.
- This quaternary ammonium group can in principle be connected directly to the structural part U, so that the structural part U represents one of the four substituents of the positively charged nitrogen atom.
- one of the four substituents on the positively charged nitrogen atom is a group, especially an alkylene group of 2 to 6 carbon atoms, which functions as a compound between the structural portion U and the positively charged nitrogen atom.
- the group Q has the general structure - (CH 2 ) ⁇ -N + R 1 R 2 R 3 X ' , in which x is an integer from 1 to 4, R 1 and R 2 independently of one another represent ⁇ _ 4 alkyl groups, R 3 is a C
- x preferably represents the number 3
- R 1 and R 2 each represent a methyl group and R 3 represents either a methyl group or a saturated or unsaturated, linear or branched hydrocarbon chain having 8 to 22, in particular 10 to 18, carbon atoms ,
- Physiologically acceptable anions are, for example, inorganic anions such as halides, in particular chloride, bromide and fluoride, sulfate ions and phosphate ions and organic anions such as lactate, citrate, acetate, tartrate, methosulfate and tosylate.
- inorganic anions such as halides, in particular chloride, bromide and fluoride, sulfate ions and phosphate ions and organic anions such as lactate, citrate, acetate, tartrate, methosulfate and tosylate.
- UV filters with cationic groups are the commercially available compounds cinnamic acid-trimethylammonium chloride (lncroquat ® UV-283) and dodecyl tosylate (Escalol ® HP 610).
- the teaching of the invention also includes the use of a combination of several UV filters.
- the combination of at least one water-insoluble UV filter with at least one UV filter with a cationic group is preferred.
- the UV filters (I) are usually contained in the agents according to the invention in amounts of 0.1-5% by weight, based on the total agent. Levels of 0.4-2.5 wt .-% are preferred.
- the agents prepared by the process according to the invention may further contain a 2-pyrrolidinone-5-carboxylic acid and its derivatives (J).
- a 2-pyrrolidinone-5-carboxylic acid and its derivatives Preference is given to the sodium, potassium, calcium, magnesium or ammonium salts in which the ammonium ion carries, in addition to hydrogen, one to three C 1 to C 4 -alkyl groups.
- the sodium salt is most preferred.
- the amounts used in the compositions according to the invention are preferably from 0.05 to 10% by weight, based on the total composition, particularly preferably from 0.1 to 5, and in particular from 0.1 to 3,% by weight.
- agents prepared by the process according to the invention may also contain plant extracts (L).
- extracts are produced by extraction of the whole plant. However, in individual cases it may also be preferred to prepare the extracts exclusively from flowers and / or leaves of the plant.
- Especially suitable for the use according to the invention are the extracts of green tea, almond, aloe vera, coconut, mango, apricot, lime, wheat, kiwi and melon.
- alcohols and mixtures thereof can be used.
- the alcohols are lower alcohols such as ethanol and isopropanol, but especially polyhydric alcohols such as ethylene glycol and propylene glycol, both as sole extractant and in admixture with water, are preferred.
- Plant extracts based on water / propylene glycol in a ratio of 1:10 to 10: 1 have proven to be particularly suitable.
- the plant extracts can be used according to the invention both in pure and in diluted form. If they are used in diluted form, they usually contain about 2 to 80 wt .-% of active substance and as a solvent used in their extraction agent or extractant mixture.
- mixtures of several, in particular two, different plant extracts in the compositions produced by the method according to the invention.
- penetration aids and / or swelling agents are contained in the agents produced by means of the method according to the invention.
- M include, for example, urea and urea derivatives, guanidine and its derivatives, arginine and its derivatives, water glass, imidazole and its derivatives, histidine and its derivatives, benzyl alcohol, glycerol, glycol and glycol ethers, propylene glycol and propylene glycol ethers, for example propylene glycol monoethyl ether, carbonates, bicarbonates, Diols and triols, and in particular 1, 2-diols and 1, 3-diols such as 1, 2-propanediol, 1, 2-pentanediol, 1, 2-hexanediol, 1, 2-dodecanediol, 1, 3-propanediol, 1 , 6-hexanediol, 1, 5-pentanedi
- a particularly preferred group of content furnaces are the silicones.
- Preferred agents prepared by the process according to the invention are characterized in that they contain at least one silicone, preferably a silicone, which is selected from:
- polyalkyl siloxanes polyaryl siloxanes, polyalkylaryl siloxanes which are volatile or nonvolatile, straight chain, branched or cyclic, crosslinked or uncrosslinked;
- linear polysiloxane A) - polyoxyalkylene
- B block copolymers of the type (AB) n with n>3
- grafted silicone polymers having a non-silicone organic backbone consisting of an organic backbone formed from organic monomers containing no silicone grafted with at least one polysiloxane macromer in the chain and optionally at least one chain end
- grafted polysiloxane backbone silicone polymers having grafted thereto non-silicone organic monomers having a polysiloxane backbone to which at least one organic macromer not containing silicone has been grafted in the chain and optionally at least at one of its ends; or their mixtures.
- Particularly preferred colorants prepared by the process according to the invention contain the silicone (s) preferably in amounts of from 0.1 to 10% by weight, preferably from 0.25 to 7% by weight and in particular from 0.5 to 5 Wt .-%, each based on the total agent.
- silicones are called DIMETHICONE according to the INCI nomenclature.
- the compounds are preferably:
- compositions of the invention may be included in the compositions of the invention.
- silicones have viscosities at 20 0 C for from 0.2 to 2 mmV 1, wherein silicones having Viskosirelien of 0.5 to 1 1 mmV are particularly bevozugt.
- Particularly preferred agents prepared by the process of the invention contain one or more aminofunctional silicones.
- Such silicones may, for example, be represented by the formula M (R a Q b Si0 (4-a-b) / 2) x (RcSi0 (4-c) / 2) y M
- R in the above formula is a hydrocarbon or a hydrocarbon group of 1 to about 6 carbon atoms
- Q is a polar group of the general formula -R 1 HZ wherein R 1 is a divalent linking group attached to hydrogen and the group Z is an organic, amino-functional radical containing at least one amino-functional group, carbon and hydrogen atoms, carbon, hydrogen and oxygen atoms or carbon, hydrogen and nitrogen atoms;
- "a” assumes values in the range of about 0 to about 2
- "b” assumes values in the range of about 1 to about 3
- "a” + "b” is less than or equal to 3
- "c” is a number in the range from about 1 to about 3
- x is a number ranging from 1 to about 2,000, preferably from about 3 to about 50, and most preferably from about 3 to about 25
- y is a number ranging from about 20 to about 10,000 , preferably from about 125 to about 10,000, and most preferably from about 150 to about 1,000
- M is a
- Non-limiting examples of the groups represented by R include alkyl groups such as methyl, ethyl, propyl, isopropyl, isopropyl, butyl, isobutyl, amyl, isoamyl, hexyl, isohexyl and the like; Alkenyl radicals such as vinyl, halovinyl, alkylvinyl, allyl, haloallyl, alkylallyl; Cycloalkyl radicals such as cyclobutyl, cyclopentyl, cyclohexyl and the like; Phenyl radicals, benzyl radicals, halohydrocarbon radicals such as 3-chloropropyl, 4-bromobutyl, 3,3,3-trifluoropropyl, chlorocyclohexyl, bromophenyl, chlorophenyl and the like, and sulfur containing radicals such as mercaptoethyl, mercaptopropyl,
- R 1 examples include methylene, ethylene, propylene, hexamethylene, decamethylene, -CH 2 CH (CH 3 ) CH 2 -, phenylene, naphthylene, -CH 2 CH 2 SCH 2 CH 2 -, -CH 2 CH 2 OCH 2 - , -OCH 2 CH 2 -, -OCH 2 CH 2 CH 2 -, -CH 2 CH (CH 3 ) C (O) OCH 2 -, - (CH 2 ) 3 CC (O) OCH 2 CH 2 -, C 6 H 4 C 6 H 4 -, -C 6 H 4 CH 2 C 6 H 4 -; and - (CH 2 ) 3 C (O) SCH 2 CH 2 -.
- Z is an organic, amino-functional radical containing at least one functional amino group.
- a possible formula for Z is NH (CH 2 ) Z NH 2 , wherein z is 1 or more.
- Another possible formula for Z is -NH (CH 2 ) Z (CH 2 ) ZZ NH, wherein both z and zz are independently 1 or more, which structure includes diamino ring structures, such as piperazinyl.
- Z is most preferably a -NHCH 2 CH 2 NH 2 radical.
- Z is - N (CH 2 ) Z (CH 2 ) ZZ NX 2 or -NX 2 , wherein each X of X 2 is independently selected from the group consisting of hydrogen and alkyl groups of 1 to 12 carbon atoms, and zz is 0.
- Q is most preferably a polar, amine functional group of the formula -CH 2 CH 2 CH 2 NHCH 2 CH 2 NH 2 .
- "a” assumes values in the range of about 0 to about 2
- "b” assumes values in the range of about 2 to about 3
- "a” + “b” is less than or equal to 3
- the molar ratio of the R a Q b SiO (4 a . b) / 2 units to the R 0 SiO (4. C) / 2 units is in the range from about 1: 2 to 1:65, preferably from about 1: 5 to about 1:65, and most preferably from about 1: 15 to about 1: 20.
- the various variable substituents in the above formula may be different for the various silicone components present in the silicone blend.
- Preferred oxidation dyes prepared by the process according to the invention are characterized in that they contain an amino-functional silicone of the formula (Si-II)
- G is -H, a phenyl group, -OH, -O-CH 3 , -CH 3 , -O-CH 2 CH 3 , -CH 2 CH 3 , -O-CH 2 CH 2 CH 3 , -
- a is a number between O and 3, in particular O;
- b is a number between 0 and 1, in particular 1,
- n and n are numbers whose sum (m + n) is between 1 and 2000, preferably between 50 and 150, where n is preferably values from 0 to 1999 and in particular from 49 to 149 and m preferably values from 1 to 2000, in particular from 1 to 10,
- R ' is a monovalent radical selected from O -QN (R ") - CH 2 -CH 2 -N (R") 2 o -QN (R ") 2 o -QN + (R") 3 A- o - QN + H (R ") 2 A " o -QN + H 2 (R ") A " o -QN (R ”) - CH 2 -CH 2 -N + R” H 2 A " where each Q is a chemical bond, -CH 2 -, -CH 2 -CH 2 -, -CH 2 CH 2 CH 2 -, -C (CH 3 ) 2 -, - CH 2 CH 2 CH 2 CH 2 -, -CH 2 C ( CHs) 2 -, -CH (CH 3 ) CH 2 CH 2 -,
- R " is identical or different radicals from the group -H, -phenyl, -benzyl, -CH 2 - CH (CH 3 ) Ph, the d ⁇ -alkyl radicals, preferably -CH 3 , -CH 2 CH 3 , -CH 2 CH 2 CH 3 , -CH (CH 3 ) 2 , -CH 2 CH 2 CH 2 H 3 , -CH 2 CH (CH 3 ) 2 , -CH (CH 3 ) CH 2 CH 3 , -C (CH 3 ) 3 , and A represents an anion, which is preferably selected from chloride, bromide, iodide or methosulfate.
- Particularly preferred agents produced by the process according to the invention are characterized in that they contain at least one amino-functional silicone of the formula (Si-IIa)
- silicones are referred to as trimethylsilylamodimethicones according to the INCI declaration.
- agents according to the invention which are an amino-functional silicone of the formula (Si-IIb)
- n1 and n2 are numbers whose sum (m + n1 + n2) is between 1 and 2,000, preferably between 50 and 150 , where the sum (n1 + n2) preferably assumes values from 0 to 1999 and in particular from 49 to 149 and m preferably values from 1 to 2000, in particular from 1 to 10.
- silicones are referred to as amodimethicones according to the INCI declaration.
- agents prepared by the process of the present invention which contain an amino-functional silicone are preferably greater than 0.25 meq / g, preferably greater than 0.3 meq / g, and most preferably greater than 0.4, amine number meq / g is.
- the amine number stands for the milliequivalents of amine per gram of amino-functional silicone. It can be determined by titration and also expressed in mg KOH / g.
- Preferred dyestuffs prepared by the process according to the invention are characterized in that, based on their weight, they contain 0.01 to 10% by weight, preferably 0.1 to 8% by weight, particularly preferably 0.25 to 7.5% by weight. and in particular from 0.5 to 5% by weight of amino-functional silicone (s).
- coloring agents for keratinic fibers produced by means of the method according to the invention are preferred which comprise at least one silicone of the formula Si-III
- agents produced by the method according to the invention may contain further ingredients.
- use of certain metal ions or complexes may be preferred to obtain intense colorations.
- Agents according to the invention which additionally contain Cu, Fe, Mn, Ru ions or complexes of these ions are preferred here.
- Preferred hair dyeing and lightening agents according to the invention contain from 0.0001 to 2.5% by weight, preferably from 0.001 to 1% by weight, based on the total composition of the composition, of at least one compound from the group consisting of copper chloride (CuCl 2 ), copper sulfate ( CuSO 4 ), iron (II) sulfate, manganese (II) sulfate, manganese (II) chloride, cobalt (II) chloride, cerium sulfate, cerium chloride, vanadium sulfate, potassium iodide, sodium iodide, lithium chloride, potassium dichromate, magnesium acetate, calcium chloride, calcium nitrate, barium nitrate, Manganese dioxide (MnO 2 ) and / or hydroquinone.
- CuCl 2 copper chloride
- CuSO 4 copper sulfate
- iron (II) sulfate manganese (II) sulf
- compositions according to the invention may contain at least one ammonium compound from the group of ammonium chloride, ammonium carbonate, ammonium bicarbonate, ammonium sulfate and / or ammonium carbamate in an amount of from 0.5 to 10, preferably from 1 to 5,% by weight, based on the total composition of the composition ,
- the agents according to the invention may contain further active ingredients, auxiliaries and additives, for example nonionic polymers, for example vinylpyrrolidone / vinyl acrylate copolymers, polyvinylpyrrolidone and vinylpyrrolidone / vinyl acetate copolymers and polysiloxanes, anionic polymers, for example polyacrylic acids, crosslinked polyacrylic acids, vinyl acetate / crotonic acid copolymers , Vinyl pyrrolidone / vinyl acrylate copolymers,
- nonionic polymers for example vinylpyrrolidone / vinyl acrylate copolymers, polyvinylpyrrolidone and vinylpyrrolidone / vinyl acetate copolymers and polysiloxanes
- anionic polymers for example polyacrylic acids, crosslinked polyacrylic acids, vinyl acetate / crotonic acid copolymers , Vinyl pyrrolidone / vinyl acrylate copolymers,
- thickeners such as agar-agar, guar gum, alginates, xanthan gum, gum arabic, karaya Gum, locust bean gum, linseed gums, dextrans, cellulose derivatives, e
- Bentonite or fully synthetic hydrocolloids such as e.g. Polyvinyl alcohol, structurants such as maleic acid and lactic acid, hair conditioning compounds such as phospholipids, for example soya lecithin, egg lecithin and cephalins,
- Protein hydrolysates in particular elastin, collagen, keratin, milk protein, soy protein and wheat protein hydrolysates, their condensation products with fatty acids and quaternized protein hydrolysates,
- Solvents and mediators such as ethanol, isopropanol, ethylene glycol, propylene glycol, glycerol and diethylene glycol, fiber-structure-improving active ingredients, in particular mono-, di- and oligosaccharides such as, for example, glucose, galactose, fructose, fructose and lactose, quaternized amines such as methyl-1-alkylamidoethyl-2-alkylimidazolinium methosulfate defoamers such as silicones, colorants for dyeing the agent,
- Antidandruff active ingredients such as Piroctone Olamine, zinc Omadine and climbazole, light stabilizers, in particular derivatized benzophenones, cinnamic acid derivatives and triazines, substances for adjusting the pH, such as customary acids, especially edible acids and bases,
- Active ingredients such as allantoin, pyrrolidonecarboxylic acids and their salts, and also bisabolol, vitamins, provitamins and vitamin precursors, in particular those of groups A, B 3 , B 5 , B 6 , C, E, F and H,
- Plant extracts such as extracts of green tea, oak bark, stinging nettle, witch hazel, hops, chamomile, burdock root, horsetail, hawthorn, lime blossom, almond, aloe vera, spruce needle, horse chestnut, sandalwood, juniper, coconut, mango, apricot, lime, wheat, kiwi , Melon, orange, grapefruit, sage, rosemary, birch, mallow, meadowfoam, quenelle, yarrow, thyme, lemon balm, toadstool, coltsfoot, marshmallow, meristem, ginseng and ginger root ,. Cholesterol,
- Bodying agents such as sugar esters, polyol esters or polyol alkyl ethers, fats and waxes such as spermaceti, beeswax, montan wax and paraffins, fatty acid alkanolamides,
- Complexing agents such as EDTA, NTA, ⁇ -alaninediacetic acid and phosphonic acids, swelling and penetrating agents such as glycerol, propylene glycol monoethyl ether, carbonates, bicarbonates, guanidines, ureas and primary, secondary and tertiary phosphates, opacifiers such as latex, styrene / PVP and styrene / acrylamide copolymers Pearlescing agents such as ethylene glycol mono- and distearate and PEG-3-distearate, pigments,
- Stabilizers for hydrogen peroxide and other oxidizing agents include propellants such as propane-butane mixtures, N 2 O, dimethyl ether, CO 2 and air, antioxidants
- Particularly preferred methods according to the invention are characterized in that the base composition contains ammonia, preferred base compositions - based on their weight - 0.1 to 10 wt .-%, preferably 0.25 to 5 wt .-% and in particular 0.5 to 2 , 5 wt .-% ammonia (each calculated as 100% NH 3 ) included.
- the process according to the invention serves to prepare color-change agents for keratinic fibers.
- at least one additional composition contains at least one color-modifying component.
- oxidation colorants For permanent, intensive colorations with corresponding fastness properties, so-called oxidation colorants are used. Such colorants usually contain oxidation dye precursors, so-called developer components and coupler components.
- the developer components form the actual dyes under the influence of oxidizing agents or of atmospheric oxygen with one another or with coupling with one or more coupler components.
- the oxidation dyes are characterized by excellent, long-lasting dyeing results. For naturally acting dyeings but usually a mixture of a larger number of oxidation dye precursors must be used; In many cases, direct dyes are still used for shading.
- the developer components used are usually primary aromatic amines having a further, in the para or ortho position, free or substituted hydroxy or amino group, heterocyclic hydrazones, diaminopyrazole derivatives and 2,4,5,6-tetraaminopyrimidine and its derivatives.
- coupler components m-phenylenediamine derivatives, naphthols, pyridine derivatives, resorcinol and resorcinol derivatives, pyrazolones and m-aminophenols are generally used.
- Suitable coupler substances are, in particular, 1-naphthol, 1,5-dihydroxynaphthalene, 2,7-dihydroxynaphthalene, 1,7-dihydroxynaphthalene, 5-amino-2-methylphenol, m-aminophenol, resorcinol, resorcinomonomethyl ether, m-phenylenediamine, 1-phenyl 3-methyl-pyrazol-5-one, 2,4-di-chloro-3-aminophenol, 1, 3-bis (2,4-diaminophenoxy) -propane, 2-amino-3-hydroxypyridine, 4-chlororesorcinol , 2-chloro-6-methyl-3-aminophenol, 2-methylresorcinol,
- dyeing or tinting agents which contain as coloring component so-called direct drawers.
- These dyes include, for example, the henna already known from antiquity for coloring body and hair.
- These dyeings are generally much more sensitive to shampooing than the oxidative dyeings, so that a much more rapid undesirable change in shade or even a visible, homogeneous color loss occurs much faster.
- precursors of the natural hair dye melanin are applied to the substrate, e.g. Hair, applied; These then form naturally-analogous dyes in the course of oxidative processes in the hair.
- multiple use of agents with 5,6-dihydroxyindoline it is possible to reproduce natural hair color to people with graying hair.
- the dyeing can be done with atmospheric oxygen as the sole oxidant, so that no further oxidizing agent must be used.
- the indoline can be used as the sole dye precursor.
- satisfactory results can often only be achieved for use in persons with originally red and, in particular, dark to black hair color, by using other dye components, in particular special oxidation dye precursors.
- a first class of oxo dye precursors are compounds having at least one reactive carbonyl group. This first class is called a component (Oxo1).
- a second class of oxo dye precursors form CH-acidic compounds and compounds having primary or secondary amino groups or hydroxy groups, which in turn are selected from compounds of the group formed from primary or secondary aromatic amines, nitrogen-containing heterocyclic compounds and aromatic hydroxy compounds. This second class is called a component (Oxo2).
- the aforementioned components (oxo1) and (oxo2) are generally not themselves dyes, and therefore are not in themselves suitable for coloring keratin-containing fibers. In combination, they form dyes in a non-oxidative process of so-called oxo dyeing. The resulting dyeings have partially color fastness on the keratin-containing fiber, which are comparable to those of the oxidation dyeing.
- the Nuancenspektrum achievable with the gentle oxo staining is very broad and the color obtained often has an acceptable brilliance and color depth.
- the oxo staining method can be readily combined with the oxidative staining system.
- the dyes coloring the substrate are usually decolorized oxidatively using appropriate oxidizing agents, for example hydrogen peroxide.
- at least one additional composition containing at least one oxidation dye precursor and / or at least one substantive dye is continuously fed to the mixing element via at least one additional metering unit.
- at least one additional composition contains, based on its weight, from 0.001 to 7% by weight of one or more oxidation dye precursors and / or direct dyes.
- p-phenylenediamine derivatives of the formula (E1) it may be preferred according to the invention to use as the developer component a p-phenylenediamine derivative or one of its physiologically acceptable salts. Particular preference is given to p-phenylenediamine derivatives of the formula (E1)
- G 1 is a hydrogen atom, a (C 1 to C 4 ) -alkyl radical, a (C 1 to C 4 ) -
- Monohydroxyalkylrest a (C 2 to C 4 ) polyhydroxyalkyl, a (Ci to C 4 ) alkoxy (Ci to
- G 2 is a hydrogen atom, a (C 1 to C 4 ) -alkyl radical, a (C 1 to C 4 ) -
- Monohydroxyalkyl a (C 2 to C 4 ) polyhydroxyalkyl, a (C 1 to C 4 ) alkoxy (C- 1 to
- G 3 represents a hydrogen atom, a halogen atom such as a chlorine, bromine, iodine or fluorine atom, a (C 1 to C 4 ) alkyl radical, a (C 1 to C 4 ) monohydroxyalkyl radical, a (C 2 to C 4 ) -
- Polyhydroxyalkyl radical a (C 1 to C 4 ) -hydroxyalkoxy radical, a (C 1 to C 4 ) -
- G 4 represents a hydrogen atom, a halogen atom or a (C 1 to C 4 ) -alkyl radical or, when G 3 and G 4 are ortho to each other, they may together form a bridging ⁇ , ⁇ -alkylenedioxo group, such as, for example, an ethylenedioxy group ,
- Particularly preferred p-phenylenediamines of formula (E1) are selected from one or more compounds of the group formed from p-phenylenediamine, p-toluenediamine, 2-chloro-p-phenylenediamine, 2,3-dimethyl-p-phenylenediamine , 2,6-dimethyl-p-phenylenediamine, 2,6-diethyl-p-phenylenediamine, 2,5-dimethyl-p-phenylenediamine, N, N-dimethyl-p-phenylenediamine, N, N-diethyl-p-phenylenediamine , N, N-dipropyl-p-phenylenediamine, 4-amino-3-methyl- (N, N-diethyl) -aniline, N, N-bis (.beta.-hydroxyethyl) -p-phenylenediamine, 4-N, N Bis ( ⁇ -hydroxyethyl) amino-2-
- Aminophenyl) -p-phenylenediamine N-phenyl-p-phenylenediamine, 2- ( ⁇ -hydroxyethyloxy) -p-phenylenediamine, 2- ( ⁇ -acetylaminoethyloxy) -p-phenylenediamine, N- ( ⁇ -methoxyethyl) -p-phenylenediamine , N- (4-amino-3-methylphenyl) -N- [3- (1H-imidazol-1-yl) propyl] amine, 5,8-diaminobenzo-1, 4-dioxane and their physiologically acceptable salts.
- Very particular preferred p-phenylenediamine derivatives of the formula (E1) according to the invention are selected from at least one compound of the group p-phenylenediamine, p-toluenediamine, 2- ( ⁇ -hydroxyethyl) -p-phenylenediamine, 2- ( ⁇ , ⁇ -dihydroxyethyl) - p-phenylenediamine, N, N-bis- ( ⁇ -hydroxyethyl) -p-phenylenediamine, N- (4-amino-3-methylphenyl) -N- [3- (1 H -imidazol-1-yl) propyl] amine , as well as the physiologically acceptable salts of these compounds.
- developer component compounds which contain at least two aromatic nuclei which are substituted by amino and / or hydroxyl groups.
- binuclear developer components which can be used in the dyeing compositions according to the invention, mention may be made in particular of the compounds corresponding to the following formula (E2) and their physiologically tolerated salts:
- Z 1 and Z 2 independently of one another represent a hydroxyl or NH 2 radical optionally substituted by a (C 1 to C 4 ) -alkyl radical, by a (C 1 to C 4 ) -hydroxyalkyl radical and / or by a bridge Y
- the bridging Y is an alkylene group having 1 to 14 carbon atoms, such as a linear or branched alkylene chain or an alkylene ring, which of one or more nitrogen-containing groups and / or one or more heteroatoms such as Oxygen, sulfur or nitrogen atoms may be interrupted or terminated and may be substituted by one or more hydroxyl or (C 1 to C 8 ) alkoxy, or a direct bond,
- G 5 and G 6 independently of one another represent a hydrogen or halogen atom, a (C 1 to C 4 ) -alkyl radical, a (C 1 to C 4 ) -monohydroxyalkyl radical, a (C 2 to C 4 ) -polyhydroxyalkyl radical, a ( C 1 to C 4 ) -aminoalkyl radical or a direct compound for bridging Y, G 7 , G 8 , G 9 , G 10 , G 11 and G 12 independently represent a hydrogen atom, a direct one
- Preferred binuclear developer components of the formula (E2) are in particular selected from at least one of the following compounds: N, N'-bis- ( ⁇ -hydroxyethyl) -N, N'-bis- (4'-aminophenyl) -1,3-diamino -propan-2-ol, N, N'-bis ( ⁇ -hydroxyethyl) -N, N'-bis (4'-aminophenyl) ethylenediamine, N, N'-bis (4'-aminophenyl) - tetramethylenediamine, N, N'-bis ( ⁇ -hydroxyethyl) -N, N'-bis (4'-aminophenyl) tetramethylenediamine, N, N'-bis (4- (methylamino) phenyl) tetramethylenediamine, N , N'-diethyl-N, N'-bis (4'-amino-3'-methylphenyl) -ethylenediamine
- Very particularly preferred binuclear developer components of the formula (E2) are selected from N, N'-bis ( ⁇ -hydroxyethyl) -N, N'-bis (4-aminophenyl) -1,3-diamino-propan-2-ol , Bis (2-hydroxy-5-aminophenyl) -methane, 1, 3-bis (2,5-diaminophenoxy) -propan-2-ol, N, N'-bis (4-aminophenyl) -1, 4-diazacycloheptane, 1, 10-bis (2,5-diaminophenyl) -1, 4,7,10-tetraoxadecane or one of the physiologically acceptable salts of these compounds.
- p-aminophenol derivatives of the formula (E3) it may be preferred according to the invention to use as the developer component a p-aminophenol derivative or one of its physiologically tolerable salts. Particular preference is given to p-aminophenol derivatives of the formula (E3)
- G 13 represents a hydrogen atom, a halogen atom, a (C 1 to C 4 ) -alkyl radical, a (C 1 to C 4 ) monohydroxyalkyl radical, a (C 2 to C 4 ) -polyhydroxyalkyl radical, a (C 1 to C 4 ) -Alkoxy- (C- ⁇ to C 4 ) -alkyl radical, a (C 1 to C 4 ) -Aminoalkylrest, a hydroxy (C ⁇ to C 4 ) -alkylamino, a (C 1 to C 4 ) -hydroxyalkoxy , a (C 1 to C 4 ) -hydroxyalkyl- (C 1 -C 4 ) -aminoalkyl radical or a (DK (C 1 -C 4 ) -alkyl] amino) - (C 1 -C 4 ) -alkyl radical, and G 14 is a hydrogen or halogen atom, a
- Monohydroxyalkyl a (C 2 to C 4 ) polyhydroxyalkyl, a (C 1 to C 4 ) alkoxy (C- 1 to
- G 15 is hydrogen, a (C 1 to C 4 ) -alkyl radical, a (C 1 to C 4 ) monohydroxyalkyl radical, a (C 2 to C 4 ) -polyhydroxyalkyl radical, a phenyl radical or a benzyl radical, and
- G 16 is hydrogen or a halogen atom.
- Preferred p-aminophenols of the formula (E3) are, in particular, p-aminophenol, N-methyl-p-aminophenol, 4-amino-3-methylphenol, 4-amino-3-fluorophenol, 2-hydroxymethylamino-4-aminophenol, 4 -Amino-3-hydroxymethylphenol, 4-amino-2- ( ⁇ -hydroxyethoxy) -phenol, 4-amino-2-methylphenol, 4-amino-2-hydroxymethylphenol, 4-amino-2-methoxymethyl-phenol, 4-amino -2-aminomethylphenol, 4-amino-2- ( ⁇ -hydroxyethyl-aminomethyl) phenol, 4-amino-2- ( ⁇ , ⁇ -dihydroxyethyl) phenol, 4-amino-2-fluorophenol, 4-amino-2 -chlorophenol, 4-amino-2,6-dichlorophenol, 4-amino-2- (diethyl-aminomethyl) -phenol and their physiological
- Very particularly preferred compounds of the formula (E3) are p-aminophenol, 4-amino-3-methylphenol, 4-amino-2-aminomethylphenol, 4-amino-2- ( ⁇ , ⁇ -dihydroxyethyl) -phenol and 4-amino 2- (diethylaminomethyl) phenol.
- the developer component may be selected from o-aminophenol and its derivatives such as 2-amino-4-methylphenol, 2-amino-5-methylphenol or 2-amino-4-chlorophenol.
- the developer component may be selected from heterocyclic developer components, such as pyrimidine derivatives, pyrazole derivatives, pyrazolopyrimidine derivatives or their physiologically acceptable salts.
- heterocyclic developer components such as pyrimidine derivatives, pyrazole derivatives, pyrazolopyrimidine derivatives or their physiologically acceptable salts.
- Preferred pyrimidine derivatives are selected according to the invention from compounds of the formula (E4) or their physiologically tolerated salts,
- G 17 , G 18 and G 19 independently of one another represent a hydrogen atom, a hydroxy group, a (C 1 to C 4 ) alkoxy group or an amino group and G 20 is a hydroxy group or a group -NG 21 G 22 , in which G 21 and G 22 independently of one another represent a hydrogen atom, a (C 1 to C 4 ) -alkyl group, a (C 1 to C 4 ) monohydroxyalkyl group, with the proviso that a maximum of two of the groups of G 17 , G 18 , G 19 and G 20 is a hydroxy group and at most two of the radicals G 17 , G 18 and G 19 are a hydrogen atom.
- At least two groups of G 17 , G 18 , G 19 and G 20 represent a group -NG 21 G 22 and at most two groups of G 17 , G 18 , G 19 and G 20 represent a hydroxy group.
- Particularly preferred pyrimidine derivatives are, in particular, the compounds 2,4,5,6-tetraaminopyrimidine, 4-hydroxy-2,5,6-triaminopyrimidine, 2-hydroxy-4,5,6-triaminopyrimidine, 2-dimethylamino-4 , 5,6-triaminopyrimidine, 2,4-dihydroxy-5,6-diaminopyrimidine and 2,5,6-triaminopyrimidine.
- Preferred pyrazole derivatives are selected according to the invention from compounds of the formula (E5),
- G 23 , G 24 , G 25 independently of one another represent a hydrogen atom, a (C 1 to C 4 ) -
- Alkyl group a (C 1 to C 4 ) monohydroxyalkyl group, a (C 2 to C 4 ) polyhydroxyalkyl group, an optionally substituted aryl group or an optionally substituted aryl (d to
- G 26 may additionally be a group -NH 2 in addition to the abovementioned groups,
- G 26 represents a hydrogen atom, a (C 1 to C 4 ) -alkyl group, a (C 1 to C 4 ) -
- G 27 represents a hydrogen atom, an optionally substituted aryl group, a (C 1 to C 4 ) -
- the radical -NG G binds to the 5-position and the radical G to the 3-position of the pyrazole cycle.
- Particularly preferred pyrazole derivatives are in particular the compounds which are selected from 4,5-diamino-1-methylpyrazole, 4,5-diamino-1- ( ⁇ -hydroxyethyl) pyrazole, 3,4-diaminopyrazole, 4,5- Diamino-1- (4'-chlorobenzyl) pyrazole, 4,5-diamino-1,3-dimethylpyrazole, 4,5-diamino-3-methyl-1-phenylpyrazole, 4,5-diamino-1-methyl-3 -phenylpyrazole, 4-amino-1,3-dimethyl-5-hydrazinopyrazole, 1-benzyl-4,5-diamino-3-methylpyrazole, 4,5-diamino-3-tert-butyl-1-methylpyrazole, 4 5-diamino-1-tert- butyl-3-methylpyrazole, 4,5-diamino-1- ( ⁇ -hydroxyethy
- Preferred pyrazolopyrimidine derivatives are, in particular, the derivatives of the pyrazolo [1,5-a] pyrimidine of the following formula (E6) and their tautomeric forms, if a tautomeric equilibrium exists:
- G 28, G 29 and G 30, G 31 are independently a hydrogen atom, a (C 1 to C 4) - alkyl radical, an aryl radical, a (C 1 to C 4) monohydroxyalkyl, a (C 2 to C 4 ) - Polyhydroxyalkylrest a (C 1 to C 4 ) alkoxy (C 1 -C 4 ) -alkyl radical, a (C 1 to C 4 ) - aminoalkyl radical which is optionally substituted by an acetyl-ureide or a sulfonyl Rest can be protected, a (C 1 to C 4 ) alkylamino (C- ⁇ to C 4 ) alkyl, a di - [(C- ⁇ to C 4 ) alkyl] - (C- ⁇ to C 4 ) -aminoalkyl radical, where the dialkyl radicals optionally form a carbon cycle or a heterocycle having 5 or 6 chain members, a (C 1 to C 4 ) mono
- n has the value 0, and the groups NG 28 G 29 and NG 30 G 31 occupy the positions (2, 3); (5,6); (6,7); (3,5) or (3,7);
- pyrazolo [1, 5-a] pyrimidines of the above formula (E6) can be prepared as described in the literature by cyclization from an aminopyrazole or from hydrazine.
- Very particularly preferred developer components are selected from at least one compound from the group formed from p-phenylenediamine, p-toluenediamine, 2- ( ⁇ -hydroxyethyl) -p-phenylenediamine, 2- ( ⁇ , ⁇ -dihydroxyethyl) -p phenylenediamine, N, N-bis ( ⁇ -hydroxyethyl) p-phenylenediamine, N- (4-amino-3-methylphenyl) -N- [3- (1 H -imidazol-1-yl) propyl] amine, N, N'-bis ( ⁇ -hydroxyethyl) -N, N'-bis (4-aminophenyl) -1, 3-diamino-propan-2-ol, bis (2-hydroxy-5-aminophenyl) - methane, 1,3-bis- (2,5-diaminophenoxy) -propan-2-ol, N, N'-bis (4-aminoph
- Examples of (C 1 to C 4 ) -alkoxy radicals according to the invention are -OCH 3 , -OCH 2 CH 3 ,
- a particularly preferred example of a (C 2 to C 4 ) polyhydroxyalkyl group is 1, 2
- halogen atoms are F, Cl or Br atoms, Cl atoms are very particularly preferred
- nitrogen-containing groups are in particular -NH 2 , (C 1 to C 4 ) -monoalkylamino groups,
- Examples of (C 1 to C 4 ) -monoalkylamino groups are -NHCH 3 , -NHCH 2 CH 3 , -NHCH 2 CH 2 CH 3 ,
- Examples of (C 1 to C 4 ) -dialkylamino group are -N (CH 3 ) 2 , -N (CH 2 CH 3 ) 2 .
- Examples of (C 1 to C 4 ) trialkylammonium groups are -N + (CH 3 ) 3 , -N + (CH 3 ) 2 (CH 2 CH 3 ),
- Examples of (C 1 to C 4 ) -hydroxyalkylamino radicals are -NH-CH 2 CH 2 OH, -NH-CH 2 CH 2 OH,
- Examples of (C 1 to C 4 ) -alkoxy- (C 1 -C 4 ) -alkyl groups are the groups -CH 2 CH 2 -O-CH 3 ,
- hydroxy (C 1 -C 4 ) -alkoxy radicals are -O-CH 2 OH, -O-CH 2 CH 2 OH, -O-CH 2 CH 2 CH 2 OH,
- Examples of (C 1 to C 4 ) -acetylaminoalkoxy radicals are -O-CH 2 NHC (O) CH 3 , -O-CH 2 CH 2 NHC (O) CH 3 ,
- Examples of (C 1 to C 4 ) -carbamoylaminoalkoxy radicals are -O-CH 2 CH 2 -NH-C (O) -NH 2 ,
- Examples of (C 1 to C 4 ) -aminoalkyl radicals are -CH 2 NH 2 , -CH 2 CH 2 NH 2 , -CH 2 CH 2 CH 2 NH 2 ,
- Examples of (C 1 to C 4 ) -cyanoalkyl radicals are -CH 2 CN 1 -CH 2 CH 2 CN 1 -CH 2 CH 2 CH 2 CN.
- Examples of (C 1 to C 4 ) -hydroxyalkylamino (C 1 -C 4 ) -alkyl radicals are -CH 2 CH 2 NH-CH 2 CH 2 OH,
- di [(d to C 4 ) -hydroxyalkyl] amino- (C 1 to C 4 ) -alkyl radicals are -CH 2 CH 2 N (CH 2 CH 2 OH) 2 ,
- aryl groups is the phenyl group.
- aryl (C 1 -C 4 ) -alkyl groups are the benzyl group and the 2-phenylethyl group.
- At least one additional composition contains, based on its weight, from 0.001 to 7% by weight of at least one developer component, with preferred developer components being selected from p-phenylenediamine, p-toluenediamine, N, N-bis- (2-hydroxyethyl) amino-p-phenylenediamine, 1, 3-bis - [(2-hydroxyethyl-4 'aminophenyl) amino] -propan-2-ol, 1, 10-bis (2', 5'- diaminophenyl) -1, 4,7,10-tetraoxadecane, 4-aminophenol, A-amino-3-methylphenol, bis (5-amino-2-hydroxyphenyl) methane, 2,4,5,6-tetraaminopyrimidine, 2- Hydroxy-4,5,6-triaminopyrimidine, 4,5-diamino-1- (2-hydroxyethyl) pyrazole.
- Coupler components do not form a significant color within the framework of the oxidative dyeing alone, but always require the presence of developer components. Therefore, it is preferred according to the invention that at least one coupler component is additionally used when using at least one developer component.
- Coupler components according to the invention allow at least one substitution of a chemical residue of the coupler by the oxidized form of the developer component. This forms a covalent bond between the coupler and the developer component.
- Couplers are preferably cyclic compounds which carry on cycle at least two groups selected from (i) optionally substituted amino groups and / or (ii) hydroxy groups. When the cyclic compound is a six-membered ring (preferably aromatic), said groups are preferably in ortho position or meta position to each other.
- Coupler components according to the invention are preferably selected as at least one compound from one of the following classes:
- o-aminophenol derivatives such as o-aminophenol
- Naphthalene derivatives having at least one hydroxy group having at least one hydroxy group
- Monohydroxyindoline derivatives and / or monoaminoindoline derivatives Pyrazolone derivatives such as 1-phenyl-3-methylpyrazol-5-one,
- Morpholine derivatives such as, for example, 6-hydroxybenzomorpholine or 6-aminobenzomorpholine,
- m-aminophenols or derivatives thereof which can be used according to the invention are preferably selected from at least one compound of the formula (K1) and / or from at least one physiologically tolerated salt of a compound of the formula (K1),
- G 1 and G 2 independently of one another represent a hydrogen atom, a (C 1 to C 4 ) -alkyl group, a (C 3 to C 6 ) -cycloalkyl group, a (C 2 to C 4 ) -alkenyl group, a (C 1 to C 4 ) monohydroxyalkyl group, a (C 2 to C 4 ) polyhydroxyalkyl group, a (C 2 to C 4 ) perfluoroacyl group, an aryl (C 1 to C 6 ) alkyl group, an AmJnO- (C 1 to C 6) -alkyl group, a (C 1 to C 6) dialkylamino (C- ⁇ alkyl to C 6) or a (C 1 to C 6) alkoxy (C- ⁇ -C 6) alkyl group, wherein G 1 and G 2 together with the nitrogen atom can form a five-membered, six-membered or seven-membered ring,
- G 3 and G 4 independently represent a hydrogen atom, a halogen atom, a (C 1 to C 4 ) alkyl group, a (C 1 to C 4 ) alkoxy group, a hydroxy group, a (C 1 to C 4 ) monohydroxyalkyl group , a (C 2 to C 4 ) polyhydroxyalkyl group, a hydroxy (C 1 -C 4 ) alkoxy group, a (C 1 to C 6 ) -alkoxy (C 2 to C 6 ) alkoxy group, an aryl group or a heteroaryl group.
- Particularly preferred m-aminophenol coupler components are selected from at least one compound selected from the group consisting of m-aminophenol, 5-amino-2-methylphenol, N-cyclopentyl-3-aminophenol, 3-amino-2-chloro-6 -methylphenol, 2-hydroxy-4-aminophenoxyethanol, 2,6-dimethyl-3-aminophenol, 3-trifluoroacetylamino-2-chloro-6-methylphenol, 5-amino-4-chloro-2-methylphenol, 5-amino-4 -methoxy-2-methylphenol, 5- (2'-hydroxyethyl) amino-2-methylphenol, 3- (diethylamino) -phenol, N-cyclopentyl-3-aminophenol, 1, 3-dihydroxy-5- (methylamino) - benzene, 3-ethylamino-4-methylphenol, 2,4-dichloro-3-aminophenol and the physiologically acceptable salts of all the abovementioned compounds.
- m-diaminobenzenes or derivatives thereof which can be used according to the invention are preferably selected from at least one compound of the formula (K2) and / or from at least one physiologically tolerated salt of a compound of the formula (K2), wherein
- G 5 , G 6 , G 7 and G 8 independently of one another represent a hydrogen atom, a (C 1 to C 4 ) -alkyl group, a (C 3 to C 6 ) -cycloalkyl group, a (C 2 to C 4 ) -alkenyl group , a (C 1 to C 4) monohydroxyalkyl, a (C 2 to C 4) - polyhydroxyalkyl group, a (C 1 to C 4) alkoxy (C- ⁇ -C 4) alkyl group, an aryl (C - ⁇ to C 4 ) alkyl group, a heteroaryl (C- ⁇ to C 4 ) alkyl group, a (C 2 to C 4 ) perfluoroacyl group, or together with the nitrogen atom form a five-membered or six-membered heterocycle
- G 9 and G 10 independently represent a hydrogen atom, a halogen atom, a
- (C 1 to C 4 ) -alkyl group a ⁇ - (2,4-diaminophenyl) - (C- ⁇ to C 4 ) -alkyl group, a ⁇ - (2,4-diaminophenyloxy) - (C- ⁇ to C 4 ) alkoxy group, a (C 1 to C 4 ) alkoxy group, a hydroxy group, a (C 1 to C 4 ) alkoxy (C 2 to C 4 ) alkoxy group, an aryl group, a heteroaryl group, a (C 1 to C 4 ) monohydroxyalkyl group, a (C 2 to C 4 ) polyhydroxyalkyl group, a hydroxy (C 1 to C 4 ) alkoxy group.
- Particularly preferred m-diaminobenzene coupler components are selected from at least one compound from the group formed from m-phenylenediamine, 2- (2,4-diaminophenoxy) ethanol, 1, 3-bis (2,4-diaminophenoxy) propane, 1-Methoxy-2-amino-4- (2'-hydroxyethylamino) benzene, 1, 3-bis (2,4-diaminophenyl) propane, 2,6-bis (2'-hydroxyethylamino) -1-methylbenzene, 2- ( ⁇ 3 - [(2-hydroxyethyl) amino] -4-methoxy-5-methylphenyl ⁇ amino) ethanol, 2 - ( ⁇ 3 - [(2-hydroxyethyl) amino] -2-methoxy-5-methylphenyl ⁇ amino) ethanol, 2 - ( ⁇ 3 - [(2-hydroxyethyl) amino] -4,5-dimethylphenyl ⁇ amino) ethanol, 2- [3-morpholin-4
- o-diaminobenzenes or their derivatives which can be used according to the invention are preferably selected from at least one compound of the formula (K3) and / or from at least one physiologically tolerated salt of a compound of the formula (K3), wherein
- G 11 , G 12 , G 13 and G 14 independently represent a hydrogen atom, a (C 1 to C 4 ) alkyl group, a (C 3 to C 6 ) cycloalkyl group, a (C 2 to C 4 ) alkenyl group , a (C 1 to C 4) monohydroxyalkyl, a (C 2 to C 4) - polyhydroxyalkyl group, a (C 1 to C 4) alkoxy (C- ⁇ -C 4) alkyl group, a AIyI- (C 1 to C 4) alkyl group, alkyl group, a heteroaryl- (C- ⁇ -C 4), a (C 2 to C 4) -Perfluoracyl distr, or together with the nitrogen atom form a five-membered or six-membered heterocycle
- G 15 and G 16 independently represent a hydrogen atom, a halogen atom, a carboxyl group, a (C 1 to C 4 ) alkyl group, a (C 1 to C 4 ) alkoxy group, a hydroxy group, a (C 1 to C 4 ) monohydroxyalkyl, a (C 2 to C 4) -polyhydroxyalkyl group, a hydroxy (C- ⁇ -C 4) - alkoxy group.
- Particularly preferred o-diaminobenzene coupler components are selected from at least one compound selected from the group consisting of 3,4-diaminobenzoic acid and 2,3-diamino-1-methylbenzene and the physiologically acceptable salts of all of the aforementioned compounds.
- Preferred di- or trihydroxybenzenes and their derivatives are selected from at least one compound of the group formed from resorcinol, resorcinol monomethyl ether, 2-methylresorcinol, 5-methylresorcinol, 2,5-dimethylresorcinol, 2-chlororesorcinol, 4-chlororesorcinol, pyrogallol and 1 , 2,4-trihydroxybenzene.
- the pyridine derivatives which can be used according to the invention are preferably selected from at least one compound of the formula (K4) and / or from at least one physiologically tolerable salt of a compound of the formula (K4),
- G 17 and G 18 independently of one another represent a hydroxy group or a group -NG 21 G 22 , in which G 21 and G 22 independently of one another represent a hydrogen atom, a (C 1 to C 4 ) -alkyl group, a (C 3 to C 6 ) -cycloalkyl group, a (C 2 to C 4 ) - , Alkenyl group, an aryl group, a (C 1 to C 4) monohydroxyalkyl, a (C 2 to C 4) -polyhydroxyalkyl group, a (C 1 to C 4) alkoxy alkyl (C- ⁇ -C 4) Aryl (C 1 -C 4 ) -alkyl group, a heteroaryl (C 1 -C 4 ) -alkyl group,
- G 19 and G 20 independently of one another represent a hydrogen atom, a halogen atom, a (C 1 to C 4 ) -alkyl group or a (C 1 to C 4 ) -alkoxy group.
- radicals G 17 and G 18 are in the ortho position or in the meta position relative to one another.
- Particularly preferred pyridine derivatives are selected from at least one compound of the group formed from 2,6-dihydroxypyridine, 2-amino-3-hydroxypyridine, 2-amino-5-chloro-3-hydroxypyridine, 3-amino-2-methylamino 6-methoxypyridine, 2,6-dihydroxy-3,4-dimethylpyridine, 2,6-dihydroxy-4-methylpyridine, 2,6-diaminopyridine, 2,3-diamino-6-methoxypyridine, 3,5-diamino-2, 6-dimethoxypyridine, 3,4-diaminopyridine, 2- (2-methoxyethyl) amino-3-amino-6-methoxypyridine, 2- (4'-methoxyphenyl) amino-3-aminopyridine, and the physiologically acceptable salts of the aforementioned compounds.
- Preferred naphthalene derivatives having at least one hydroxy group are selected from at least one compound of the group formed from 1-naphthol, 2-methyl-1-naphthol, 2-hydroxymethyl-1-naphthol, 2-hydroxyethyl-1-naphthol, 1, 3 Dihydroxynaphthalene, 1, 5
- Dihydroxynaphthalene 1,6-dihydroxynaphthalene, 1,7-dihydroxynaphthalene, 1,8-dihydroxynaphthalene, 2,7-dihydroxynaphthalene and 2,3-dihydroxynaphthalene.
- the indole derivatives which can be used according to the invention are preferably selected from at least one compound of the formula (K5) and / or from at least one physiologically tolerated salt of a compound of the formula (K5),
- G 23 represents a hydrogen atom, a C 1 to C 4 alkyl group, a C 3 to C 6 cycloalkyl group, a C 2 to C 4 alkenyl group, a C 1 to C 4 monohydroxyalkyl group , a (C 2 to C 4 ) -
- G 24 represents a hydroxy group or a group -NG 26 G 27 , in which G 26 and G 27 independently of one another represent a hydrogen atom, a (C 1 to C 4 ) Alkyl group, a (C 3 to C 6 ) -
- Cycloalkyl group a (C 2 to C 4 ) alkenyl group, a (C 1 to C 4 ) monohydroxyalkyl group, a (C 2 to C 4 ) polyhydroxyalkyl group, G 25 hydrogen atom, a halogen atom or a (C 1 to C 4 ) alkyl group, with the proviso that G 24 binds in the meta position or ortho position to the structural fragment NG 23 of the formula.
- Particularly preferred indole derivatives are selected from at least one compound of the group which is formed from 4-hydroxyindole, 6-hydroxyindole and 7-hydroxyindole and the physiologically acceptable salts of the abovementioned compounds.
- the indoline derivatives which can be used according to the invention are preferably selected from at least one compound of the formula (K6) and / or from at least one physiologically tolerable salt of a compound of the formula (K6),
- G 28 is a hydrogen atom, a (C 1 to C 4 ) -alkyl group, a (C 3 to C 6 ) -cycloalkyl group, a (C 2 to C 4 ) -alkenyl group, a (C 1 to C 4 ) - Monohydroxyalkyl group, a (C 2 to C 4 ) -
- G 29 represents a hydroxy group or a group -NG 31 G 32 , in which G 31 and G 32 independently of one another represent a hydrogen atom, a (C 1 to C 4 ) Alkyl group, a (C 3 to C 6 ) -
- Cycloalkyl group a (C 2 to C 4 ) alkenyl group, a (C 1 to C 4 ) monohydroxyalkyl group, a (C 2 to C 4 ) polyhydroxyalkyl group,
- G 30 is a hydrogen atom, a halogen atom or a (C 1 to C 4 ) alkyl group, with the proviso that G 29 binds in the meta position or ortho position to the structural fragment NG 28 of the formula.
- Particularly preferred indoline derivatives are selected from at least one compound of the group formed from 4-hydroxyindoline, 6-hydroxyindoline and 7-hydroxyindoline and the physiologically acceptable salts of the aforementioned compounds.
- Preferred pyrimidine derivatives are selected from at least one compound of the group formed from 4,6-diaminopyrimidine, 4-amino-2,6-dihydroxypyrimidine, 2,4-diamino-6-hydroxypyrimidine, 2,4,6-trihydroxypyrimidine, 2 -Amino-4-methylpyrimidine, 2-amino-4-hydroxy-6-methylpyrimidine and 4,6-dihydroxy-2-methylpyrimidine and the physiologically acceptable salts of the aforementioned compounds.
- coupler components according to the invention are selected from m-aminophenol, 5-amino-2-methylphenol, 3-amino-2-chloro-6-methylphenol, 2-hydroxy-4-aminophenoxyethanol, 5-amino-4-chloro-2-methylphenol , 5- (2'-hydroxyethyl) amino-2-methylphenol, 2,4-dichloro-3-aminophenol, o-aminophenol, m-phenylenediamine, 2- (2,4-diaminophenoxy) ethanol, 1, 3 Bis (2,4-diaminophenoxy) propane, 1-methoxy-2-amino-4- (2'-hydroxyethylamino) benzene, 1, 3-bis (2,4-diaminophenyl) propane, 2,6-bis (2 ' -hydroxyethylamino) -1-methylbenzene, 2 - ( ⁇ 3 - [(2-hydroxyethyl) amino] -4-methoxy-5-methylphenyl ⁇ amino)
- the coupler components are preferably used in an amount of 0.005 to 20 wt .-%, preferably 0.1 to 5 wt .-%, each based on the ready-to-use oxidation colorant.
- developer components and coupler components are generally used in approximately molar amounts to each other.
- a certain excess of individual oxidation dye precursors is not disadvantageous, so that developer components and coupler components in a molar ratio of 1: 0.5 to 1: 3, in particular 1: 1 to 1: 2 , can stand.
- Examples of (C 3 to C 6 ) cycloalkyl groups according to the invention are cyclopropyl, cyclopentyl and cyclohexyl.
- Examples of (C 1 to C 4 ) -alkoxy radicals according to the invention are -OCH 3 , -OCH 2 CH 3 ,
- a particularly preferred example of a (C 2 to C 4 ) polyhydroxyalkyl group is 1, 2
- halogen atoms are F, Cl or Br atoms, Cl atoms are very particularly preferred
- nitrogen-containing groups are in particular -NH 2 , (C 1 to C 4 ) -monoalkylamino groups,
- Monohydroxyalkylamino groups imidazolinium and -NH 3 + .
- Examples of (C 1 to C 4 ) -monoalkylamino groups are -NHCH 3 , -NHCH 2 CH 3 , -NHCH 2 CH 2 CH 3 ,
- Examples of (C 1 to C 4 ) -dialkylamino group are -N (CH 3 ) 2 , -N (CH 2 CH 3 ) 2 .
- Examples of (C 1 to C 4 ) -alkoxy- (C 1 -C 4 ) -alkyl groups are the groups -CH 2 CH 2 -O-CH 3 ,
- Examples of (C 1 to C 4 ) -alkoxy (C 1 -C 4 ) -alkoxy groups are the groups -O-CH 2 CH 2 -O-CH 3 ,
- hydroxy (C 1 -C 4 ) -alkoxy radicals are -O-CH 2 OH, -O-CH 2 CH 2 OH, -O-CH 2 CH 2 CH 2 OH,
- Examples of (C 1 to C 4 ) -aminoalkyl radicals are -CH 2 NH 2 , -CH 2 CH 2 NH 2 , -CH 2 CH 2 CH 2 NH 2 ,
- aryl groups is the phenyl group, which may also be substituted.
- aryl (C 1 -C 4 ) -alkyl groups are the benzyl group and the 2-phenylethyl group.
- At least one additional composition contains, based on its weight, from 0.001 to 7% by weight of at least one coupler component, preferred coupler components being selected from resorcinol, 2-methylresorcinol, 5-methyl-resorcinol, 2.5 Dimethyl resorcinol, 4-chlororesorcinol, resorcinol monomethyl ether, 5-aminophenol, 5-amino-2-methylphenol, 5- (2-hydroxyethyl) amino-2-methylphenol, 3-amino-4-chloro-2-methylphenol, 3-amino 2-chloro-6-methylphenol, 3-amino-2,4-dichlorophenol, 2,4-
- the additional compositions may contain at least one substantive dye. These are dyes that raise directly on the hair and do not require an oxidative process to form the color. Direct dyes are usually nitrophenylenediamines, nitroaminophenols, azo dyes, anthraquinones or indophenols.
- the substantive dyes are each preferably used in an amount of 0.001 to 20 wt .-%, based on the total application preparation.
- the total amount of substantive dyes is preferably at most 20% by weight.
- Direct dyes can be subdivided into anionic, cationic and nonionic substantive dyes.
- Particularly suitable anionic direct dyes are 6-hydroxy-5 - [(4-sulfophenyl) azo] -2-naphthalenesulfonic acid disodium salt (CI 15.985, Food Yellow No. 3, FD & C Yellow No. 6), 2,4-dinitro-1 -naphthol-7-sulfonic acid disodium salt (Cl.10.316; Acid Yellow 1, Food Yellow No. 1), 2- (indan-1, 3-dion-2-yl) quinoline-x, x-sulfonic acid (mixture of mono and disulfonic acid) (Cl 47,005, D & C Yellow No. 10, Food Yellow No.
- Acid Blue 1 Bis [4- (diethylamino) phenyl] (5-hydroxy-2,4-disulfophenyl) carbenium inner salt, calcium salt (2: 1) (Cl. 42.051; Acid Blue 3), N- [4 - [(2,4-disulfophenyl) [4- [ethyl (phenylmethyl) amino) phenyl] methylene] -2,5-cyclohexadien-1-ylidene] -N-ethylbenzenemethanaminium hydroxide, internal salt, sodium salt (CI 42.080, Acid Blue 7), (2-sulfophenyl) di [4- (ethyl ((4-sulfophenyl) methyl) amino) phenyl] -carbenium dinatrium salt betaine (CI 42,090, Acid Blue 9 FD & C Blue No.
- Preferred anionic substantive dyes are those under the international designations or trade names Acid Yellow 1, Yellow 10, Acid Yellow 23, Acid Yellow 36, Acid Orange 7, Acid Red 33, Acid Red 52, Pigment Red 57: 1, Acid Blue 7, Acid Green 50, Acid Violet 43, Acid Black 1 and Acid Black 52 known compounds.
- Particularly suitable cationic direct dyes are 9- (dimethylamino) benzo [a] phenoxazine-7-ium chloride (Cl 51, 175, Basic Blue 6), di [4- (diethylamino) phenyl] [4- (ethylamino ) naphthyl] carbenium chloride (Cl 42,595, Basic Blue 7), di- (4- (dimethylamino) phenyl) - (4- (methylphenylamino) naphthalen-1-yl) carbenium chloride (CI 42,563; Basic Blue 8), 3,7-di (dimethylamino) -phenothiazine-5-ium chloride (CI 52.015 Basic Blue 9), di [4- (dimethylamino) phenyl] [4- (phenylamino) naphthyl] carbenium chloride ( Cl.44,045; Basic Blue 26), 2- [(4- (ethyl (2-hydroxyeth
- aromatic systems substituted with a quaternary nitrogen group such as Basic Yellow 57, Basic Red 76, Basic Blue 99, Basic Brown 16 and Basic Brown 17, as well as
- Preferred cationic substantive dyes of group (c) are in particular the following compounds:
- the compounds of the formulas (DZ1), (DZ3) and (DZ5) which are also known by the names Basic Yellow 87, Basic Orange 31 and Basic Red 51, are very particularly preferred cationic substantive dyes of group (c).
- the cationic direct dyes which are sold under the trademark Arianor ®, according to the invention are also very particularly preferred cationic direct dyes.
- Nonionic substantive dyes are:
- Suitable nonionic substantive dyes are in particular nonionic nitro and quinone dyes and neutral azo dyes.
- Suitable blue nitro dyes are in particular:
- Suitable red nitro dyes are in particular:
- Suitable yellow nitro dyes are in particular:
- 1,2-diamino-4-nitrobenzene (CI 76,020), 1 - [(2-hydroxyethyl) amino] -2-nitrobenzene (HC Yellow 2), 1- (2-hydroxyethoxy) -2 - [(2-hydroxyethyl ) amino] -5-nitrobenzene (HC Yellow 4), 1-amino-2 - [(2-hydroxyethyl) amino] -5-nitrobenzene (HC Yellow 5), 4 - [(2,3-dihydroxypropyl) amino] 3-nitro-1-trifluoromethylbenzene (HC Yellow 6), 2- [di (2-hydroxyethyl) amino] -5-nitrophenol, 2 - [(2-hydroxyethyl) amino] -1-methoxy-5- nitrobenzene, 2-amino-3-nitrophenol, 2-amino-4-nitrophenol, 1-amino-2-methyl-6-nitrobenzene, 1- (2-hydroxyethoxy) -3-methylamino-4-nitrobenzene, 2,3- (D
- Suitable quinone dyes are in particular:
- Suitable neutral azo dyes are in particular:
- Preferred nonionic substantive dyes are those under the international designations or trade names HC Yellow 2, HC Yellow 4, HC Yellow 5, HC Yellow 6, HC Yellow 12, HC Orange 1, Disperse Orange 3, HC Red 1, HC Red 3, HC Red Red, HC Blue 2, HC Blue 1, HC Blue 12, Disperse Blue 3, HC Violet 1, Disperse Violet 1, Disperse Violet 4, Disperse Black 9 known compounds, and 1, 4-diamino-2-nitrobenzene, 2-amino-4-nitrophenol, 1,4-bis (2-hydroxyethyl) amino-2-nitrobenzene, 3-nitro-4- (2-hydroxyethyl) aminophenol , 2- (2-
- the substantive dyes each represent uniform compounds. Rather, due to the production process for the individual dyes, minor amounts of other components may be included, as far as these do not adversely affect the dyeing result or for other reasons, e.g. toxicological, must be excluded.
- direct dyes also naturally occurring dyes may be used, as for example in henna red, henna neutral, henna black, chamomile flower, sandalwood, black tea, buckthorn bark, sage, bluewood, madder root, Catechu, Sedre and alkano root are included.
- At least one additional composition contains, based on its weight, from 0.001 to 5% by weight of at least one substantive dye selected from nitrophenylenediamines, Nitroaminophenolen, azo dyes, anthraquinones or indophenols, preferably from the group of known under the international names or trade names dyes HC Yellow 2, HC Yellow 4, HC Yellow 5, HC Yellow 6, HC Yellow 12, Acid Yellow 1, Acid Yellow 10, Acid Yellow 23, Acid Yellow 36, HC Orange 1, Disperse Orange 3, Acid Orange 7, HC Red 1, HC Red 3, HC Red 10, HC Red 11, HC Red 13, Acid Red 33, Acid Red 52, HC Red BN, Pigment Red 57: 1, HC Blue 2, HC Blue 12, Disperse Blue 3, Acid Blue 7, Acid Green 50, HC Violet 1, Disperse Violet 1, Disperse Violet 4, Acid Violet 43, Disperse Black 9, Acid Black 1, and Acid Black 52 known compounds and 1, 4-diamino-2-nitrobenzene, 2-amino-4-nitro
- At least one additional composition contains coupler components and is free from developer components.
- coloring of keratinic fibers can also be effected by reaction of so-called oxo dye precursors.
- oxo dye precursors may therefore also be part of one or more additional compositions.
- Preferred oxo dye precursors are a combination of at least one compound containing at least one reactive carbonyl group (component (oxo 1)) with at least one compound (component oxo2) compounds selected from (oxo2a) CH-acidic compounds and / or
- (Oxo2b) Compounds having primary or secondary amino group or hydroxy group selected from at least one compound of the group formed from primary or secondary aromatic amines, nitrogen-containing heterocyclic compounds and aromatic hydroxy compounds.
- Reactive carbonyl compounds as component (oxo1) have in the context of the invention at least one carbonyl group as a reactive group which reacts with the component (oxo2) to form a covalent bond.
- Preferred reactive carbonyl compounds are selected from compounds which carry at least one formyl group and / or at least one keto group, in particular at least one formyl group.
- those compounds according to the invention are also suitable as component (Oxo1) in which the reactive carbonyl group is derivatized or masked such that the reactivity of the carbon atom of the derivatized carbonyl group with respect to the component (Oxo2) is always present.
- component (Oxo1) is preferably addition compounds a) of amines and their derivatives to form imines or oximes as addition compound b) of alcohols to form acetals or ketals as addition compound c) of water to form hydrates as addition compound (component (Oxo1) is derived in in this case c) from an aldehyde) to the carbon atom of the carbonyl group of the reactive carbonyl compound.
- Preferred reactive carbonyl compounds of the component (oxo1) are selected from the group consisting of benzaldehyde and its derivatives, naphthaldehyde and its derivatives, cinnamaldehyde and its derivatives, 2-formylmethylene-1,3,3-trimethylindoline (Fischer's aldehyde or tribasic aldehyde), 2-indolaldehyde, 3-indolaldehyde, 1-methylindole-3-aldehyde, 2-methylindole-3-aldehyde, 2- (1 ', 3', 3'-trimethyl-2-indolinylidene) -acetaldehyde, 1-methylpyrrole-2 -aldehyde, pyridoxal, antipyrine-4-aldehyde, furfural, 5-nitrofurfural, chromone-3-aldehyde, 3- (5'-nitro-2'-furyl) -acrolein, 3-
- Morpholinophenyl penta-2,4-dienal
- Benzaldehyde and / or cinnamaldehyde and / or naphthaldehyde and / or at least one derivative of these abovementioned aldehydes, which in particular carry one or more hydroxyl, alkoxy or amino substituents, are very particularly preferably used as the reactive carbonyl component in the oxo dyeing.
- the reactive carbonyl compound of the component (oxo1) selected from at least one compound of the formula (AC-1),
- R 1 , R 2 and R 3 independently of one another represent a hydrogen atom, a halogen atom, a (C 1 to C 6 ) -alkyl group, a (C 2 to C 6 ) -alkenyl group, a formyl group, a hydroxy group, a C 1 to C 6 rC 6 alkoxy group, a (C 1 -C 6) dialkylamino group, a di (C 2 -C 6 - hydroxyalkyl) amino group, a di (C 1 to C 6) alkoxy (C- ⁇ -C 6) - alkyl) amino group, (C 1 to C 6 ) hydroxyalkyloxy group, sulfonyl group, carboxyl group, sulfonic acid group, sulfonamide group, carbamoyl group, (C 2 to C 6 ) acyl group, acetyl group or nitro group,
- Z ' is a direct bond or a vinylene group
- R 4 and R 5 represent a hydrogen atom or together form, together with the remainder of the molecule, a 5- or 6-membered aromatic or aliphatic ring.
- the derivatives of benzaldehydes, naphthaldehydes or cinnamaldehydes of the reactive carbonyl compound according to component (Oxo1) are preferably selected from at least one compound of the group consisting of 4-hydroxy-3-methoxybenzaldehyde, 3,5-dimethoxy-4-hydroxybenzaldehyde, 4-hydroxy 1-naphthaldehyde, 4-hydroxy-2-methoxybenzaldehyde, 3,4-dihydroxy-5-methoxybenzaldehyde, 3,4,5-trihydroxybenzaldehyde, 3,5-dibromo-4-hydroxybenzaldehyde, 4-hydroxy-3-nitrobenzaldehyde, 3 Bromo-4-hydroxybenzaldehyde, 4-hydroxy-3-methylbenzaldehyde, 3,5-dimethyl-4-hydroxybenzaldehyde, 5-bromo-4-hydroxy-3-methoxybenzaldehyde, 4-diethylamino-2-hydroxybenzaldehyde, 4-di
- CH-acidic compounds are generally considered those compounds which carry a bound to an aliphatic carbon atom hydrogen atom, wherein due to electron-withdrawing substituents activation of the corresponding carbon-hydrogen bond is effected.
- these are preferably those CH-acidic compounds which contain an aromatic and / or a heterocyclic radical.
- the heterocyclic radical may in turn be aliphatic or be aromatic.
- the CH-acidic compounds are particularly preferably selected from heterocyclic compounds, in particular cationic, heterocyclic compounds.
- component (oxo2a) at least one CH-acidic compound having an aromatic or aliphatic, heterocyclic basic body which is selected from cyclic onium compounds having the structural unit of the formula (CH-1) and / or compounds of the formula (CH-) 2)
- R 6 represents a linear or cyclic (C 1 to C 6 ) alkyl group, a (C 2 to C 6 ) alkenyl group, an optionally substituted aryl group, an optionally substituted heteroaryl group, an aryl (C 1 to C 6 ) alkyl group , a (C 1 to C 6 ) hydroxyalkyl group, a (C 2 to C 6 ) polyhydroxyalkyl group, a (C 1 to C 6 ) alkoxy (C 1 to C 6 ) alkyl group, a group R'R "N- ( CH 2 ) m -, in which R 1 and R "are each, independently of one another, a hydrogen atom, a (C 1 to C 4 ) -alkyl group, a (C 1 to C 4 ) -hydroxyalkyl group or an aryl- (C 1 -C to C 6 ) - alkyl group, wherein R 1 and R 11 together with the nitrogen atom can form a 5-,
- R 7 is a (C 1 to C 6 ) -alkyl group, in particular a methyl group,
- X " is a physiologically acceptable anion
- the cycle of the formula (CH-1) represents all ring structures which may additionally contain other heteroatoms such as nitrogen, oxygen or sulfur and may further carry fused ring structures, all of these ring structures being able to carry additional substituents,
- Het is an optionally substituted heteroaromatic
- X 1 represents a direct bond or a carbonyl group.
- Preferred ring structures which carry the structural unit of the formula (CH-1) are preferably selected according to the invention from 3H-indolium, benzothiazolium, benzoxazolium, 1, 2-dihydro-2-oxopyrimidinium, quinolinium, quinoxalinium or pyridinium.
- compounds of the formula (CH-2) are particularly suitable for those in which the radical Het according to formula (CH-2) is derived from one of the heteroaromatic compounds furan, thiophene, pyrrole, isoxazole, isothiazole, imidazole, oxazole, thiazole, pyridine , Pyridazine, pyrimidine, pyrazine, 1, 2,3-triazine, 1, 2,4-triazine, 1, 3,5-triazine, benzopyrrole, benzofuran, benzothiophene, benzimidazole, benzothiazole, benzoxazole, indazole, benzoisoxazole, benzoisothiazole, indole , Quinoline, isoquinoline, Cinnoline, phthalazine, quinazoline, quinoxaline, acridine, benzoquinoline, benzoisoquinoline, phenazine, benzocin
- the compounds of formula (CH-2) are selected from at least one compound of the group consisting of 2- (2-furoyl) -acetonitrile, 2- (5-bromo-2-furoyl) -acetonitrile, 3- (2.5 - dimethyl-3-furyl) -3-oxopropanitrile, 2- (2-thenoyl) -acetonitrile, 2- (3-thenoyl) -acetonitrile, 2- (5-fluoro-2-thenoyl) -acetonitrile, 2- (5 -Chloro-2-thenoyl) -acetonitrile, 2- (5-bromo-2-thenoyl) -acetonitrile, 2- (5-methyl-2-thenoyl) -acetonitrile, 2- (2,5-dimethylpyrrol-3-oyl ) -acetonitrile, 2- (1, 2,5-trimethylpyrrol-3-oyl) -acetonitrile
- the CH-acidic compounds of the oxo dye precursors of the component (oxo2a) are preferably selected from at least one compound of the formula (CH-3),
- R and R independently represent a linear or cyclic (C 1 to C 6 ) alkyl group, a (C 2 to C 6 ) alkenyl group, an optionally substituted aryl group, an optionally substituted heteroaryl group, an aryl (d to C 6) -alkyl group, a (C 1 -C 6) - hydroxyalkyl group, a (C 2 -C 6) -polyhydroxyalkyl group, a (C 1 to C 6) alkoxy (C- ⁇ -C 6) - alkyl group, a R 'R M is N- (CH 2 ) m -, in which R 1 and R 11 independently of one another represent a hydrogen atom, a (C 1 to C 4 ) -alkyl group, a (C 1 to C 4 ) -hydroxyalkyl group or a Aryl- (C- ⁇ to C 4 ) alkyl group, wherein R 1 and R 11 together with the nitrogen atom can form a 5-
- R 11 represents a hydrogen atom, a (C 1 to C 6) alkyl group, a (C 1 -C 6) - hydroxyalkyl group, a (C 2 -C 6) -polyhydroxyalkyl group, a (C 1 to C 6) - Alkoxy group, a (C 1 to C 6 ) -hydroxyalkoxy group, a group R m R IV N- (CH 2 ) q -, in which R 1 "and R IV independently of one another represent a hydrogen atom, a (C 1 to C 6 ) Alkyl group, a (C 1 to C 6 ) - hydroxyalkyl group or an aryl (d to C 6 ) alkyl group and q is a number 1, 2, 3, 4, 5 or 6, wherein the radical R 11 together with one of the radicals R 10 or R 12 may form a 5- or 6-membered aromatic ring optionally substituted by a halogen atom, a (C 1 to C 6 ) -
- Y represents an oxygen atom, a sulfur atom or a group NR V ", wherein R v" stands for a hydrogen atom, an aryl group, a heteroaryl group, a (C 1 to C 6) alkyl group or an aryl (C- ⁇ to C 6 ) alkyl group,
- X ' is a physiologically acceptable anion.
- At least one group R 10 or R 12 according to formula (CH-3) necessarily stands for a (C 1 to C 6 ) -alkyl group.
- This alkyl group preferably carries at least two hydrogen atoms on its ⁇ -carbon atom.
- Particularly preferred alkyl groups are the methyl, ethyl, propyl, n-butyl, iso-butyl, n-pentyl, neo-pentyl, n-hexyl group.
- R 10 and R 12 are each independently hydrogen or a methyl group, wherein at least one group R 10 or R 12 is a methyl group.
- Y of the formula (CH-3) is an oxygen or a sulfur atom, more preferably an oxygen atom.
- the radical R 8 of the formula (CH-3) is preferably selected from a (C 1 to C 6 ) alkyl group
- Allyl group a (C 2 to C 6 ) hydroxyalkyl group (especially a 2-hydroxyethyl group) or an optionally substituted benzyl group.
- R 11 of the formula (CH-3) is preferably a hydrogen atom.
- radicals R 9 , R 10 and R 12 is a methyl group
- the radical R 11 is a hydrogen atom
- Y is an oxygen or sulfur atom
- the radical R 8 is selected from a ( C 1 to C 6 ) alkyl group (particularly preferably a methyl group), a (C 2 to C 6 ) alkenyl group (especially an allyl group), a (C 2 to C 6 ) hydroxyalkyl group (especially a 2-hydroxyethyl group) or an optionally substituted benzyl group.
- the compounds of formula (CH-3) are selected from one or more
- Very particularly preferred compounds according to formula (CH-3) are selected from one or more compounds of the group of salts with physiologically acceptable counterion X " , which is formed from salts of
- X " in the formulas (CH-1) and (CH-3) and in the above lists is preferably halide, benzenesulfonate, p-toluenesulfonate, (C 1 to C 4 ) -alkanesulfonate, trifluoromethanesulfonate, perchlorate, 0.5 sulfate, hydrogensulfate, Tetrafluoroborate, hexafluorophosphate or tetrachlorozincate, particularly preferably the anions chloride, bromide, iodide, hydrogen sulfate or p-toluenesulfonate are used as X ' .
- the CH-acidic compounds of the oxo dye precursors of the component (oxo2a) are most preferably selected from at least one compound of the group consisting of 2- (2-furoyl) -acetonitrile, 2- (5-bromo-2-furoyl) -acetonitrile, 3- (2,5-dimethyl-3-furyl) -3-oxopropanitrile, 2- (2-thenoyl) -acetonitrile, 2- (3-thenoyl) -acetonitrile, 2- (5-fluoro-2-thenoyl) - acetonitrile, 2- (5-chloro-2-thenoyl) acetonitrile, 2- (5-bromo-2-thenoyl) -acetonitrile, 2- (5-methyl-2-thenoyl) -acetonitrile, 2- (2.5 -Dimethylpyrrolo-3-oyl) -acetonitrile, 2- (1, 2,5-
- Trimethylquinoxaluminum p-toluenesulfonate 1-allyl-1,2-dihydro-3,4,6-trimethyl-2-oxopyrimidinium bromide, 1,2-dihydro-1- (2-hydroxyethyl) -3,4,6- trimethyl 2-oxopyrimidinium p-toluenesulfonate, 1, 2-dihydro-1, 3,4,6-tetramethyl-2-oxopyrimidinium chloride, 1,2-dihydro-1,3-diethyl-4,6- dimethyl-2-oxopyrimidinium chloride, 1,2-dihydro-1,3-dipropyl-4,6-dimethyl-2-oxopyrimidinium chloride, 1-allyl-1,2-dihydro-3,4, 6-trimethyl-2-oxopyrimidinium hydrogensulfate, 1,2-dihydro-1- (2-hydroxyethyl) -3,4,6-trimethyl-2-oxopyrimidin
- component (Oxo2b) at least one oxidation dye precursor having at least one primary or secondary amino group and / or at least one hydroxyl group can be used. Preferred suitable representatives are found under the execution of the oxidation dye precursors. However, it is preferred according to the invention if the compounds of the component (oxo2) are selected only among CH-acidic compounds.
- the above-mentioned compounds of the component (Oxo1) and the component (Oxo2) are, when used, each preferably in an amount of 0.03 to 65 mmol, in particular from 1 to 40 mmol, based on 100 g of the total composition , used.
- At least one additional composition contains, based on its weight, from 0.001 to 7% by weight of one or more compounds which contain a reactive carbonyl group.
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Abstract
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| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| DE102007050766A DE102007050766A1 (de) | 2007-10-22 | 2007-10-22 | Verfahren zur kontinuierlichen Herstellung von Färbemitteln für keratinische Fasern |
| PCT/EP2008/060475 WO2009053127A1 (de) | 2007-10-22 | 2008-08-08 | Verfahren zur kontinuierlichen herstellung von färbemitteln für keratinische fasern |
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| EP2200735A1 true EP2200735A1 (de) | 2010-06-30 |
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| EP08802984A Ceased EP2200735A1 (de) | 2007-10-22 | 2008-08-08 | Verfahren zur kontinuierlichen herstellung von färbemitteln für keratinische fasern |
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| EP (1) | EP2200735A1 (de) |
| DE (1) | DE102007050766A1 (de) |
| WO (1) | WO2009053127A1 (de) |
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| DE102010042662A1 (de) * | 2010-10-20 | 2012-04-26 | Henkel Ag & Co. Kgaa | Verfahren zur Herstellung eines Färbemittels |
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| DE3725030A1 (de) | 1987-07-29 | 1989-02-09 | Henkel Kgaa | Oberflaechenaktive hydroxysulfonate |
| DE4413686C2 (de) | 1994-04-20 | 1996-10-24 | Henkel Kgaa | Kationische Zuckertenside, Verfahren zu ihrer Herstellung und deren Verwendung |
| FR2785183B1 (fr) | 1998-11-04 | 2002-04-05 | Oreal | COMPOSITION TINCTORIALE CONTENANT UN COLORANT DIRECT CATIONIQUE ET UNE PYRAZOLO-[1,5-a]- PYRIMIDINE A TITRE DE BASE D'OXYDATION, ET PROCEDES DE TEINTURE |
| DE10208265A1 (de) * | 2002-02-26 | 2003-09-11 | Beiersdorf Ag | Verfahren zur Herstellung von Emulsionen |
| DE102004025281B4 (de) * | 2004-05-19 | 2008-09-04 | Henkel Ag & Co. Kgaa | Verfahren zur Herstellung von Mitteln zur Färbung keratinischer Fasern |
-
2007
- 2007-10-22 DE DE102007050766A patent/DE102007050766A1/de not_active Withdrawn
-
2008
- 2008-08-08 WO PCT/EP2008/060475 patent/WO2009053127A1/de not_active Ceased
- 2008-08-08 EP EP08802984A patent/EP2200735A1/de not_active Ceased
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