CN1448449A - Water-based ink-jet dye - Google Patents

Water-based ink-jet dye Download PDF

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Publication number
CN1448449A
CN1448449A CN 03111517 CN03111517A CN1448449A CN 1448449 A CN1448449 A CN 1448449A CN 03111517 CN03111517 CN 03111517 CN 03111517 A CN03111517 A CN 03111517A CN 1448449 A CN1448449 A CN 1448449A
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ink
dye
dyestuff
deng
glycol
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CN1204211C (en
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彭孝军
崔京南
王立成
张蓉
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Dalian Suplor Information Material Co Ltd
Dalian University of Technology
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Dalian Suplor Information Material Co Ltd
Dalian University of Technology
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Abstract

The present invention relates to ink jetting printing in computer, color spraying and drawing and textile digital ink jetting printing technology, and is the dye for the ink and its composition. The new-type ink jetting dye has in its molecule radical R with solabilization on humectant, and R is O(CH2CH2O)nH, NH(CH2CH2O)nH, N[(CH2CH2O)nH]2, R', etc. with R' is m-NHC6H4SO2CH2CH2R, p-NHC6H4SO2CH2CH2R, etc. and n is 0-8. This kind of dye will not be separated from the humectant to choke nozzle when water is volatized and the ink containing this kind of dye has less carbon deposition in hot nozzle resulting in long service life of nozzle.

Description

Water-based ink-jet dye
Technical field
The invention belongs to the digital ink-jet printed technical field of computer ink-jet printing, color painting and yarn fabric, the dye well ink that relates in the used ink in above-mentioned field is formed.
Background technology
Spray ink Printing (air brushing, ink-jet printed) technology is that droplet stream is ejected on a certain surface, and by the computer control jet direction, so that make black droplet stream on this surface, form required print image.Continous inkjet and drop on demand ink jet (drop-on-demand, i.e. DOD) dual mode is arranged at present.During continous inkjet, China ink droplet stream Continuous Flow is crossed nozzle (no matter whether carrying out printing), and black droplet stream departs from according to computerized information, forms image, untapped black droplet then is drawn towards the circulation groove, so ink does not have the danger of doing solid and plug nozzle.On the contrary, in the DOD mode, when having only the character of formation or image, black droplet just is launched out, in addition, as required, ink jet unit also can be stopped using a couple of days or longer time sometimes, because ink is exposed in the air, can produces because of the volatilization of volatile components in the ink (as water) and do admittedly, solids such as dyestuff etc. are deposited in the nozzle, cause spray nozzle clogging.Because advantages such as the DOD mode have environmental protection, cost of use is low, equipment manufacturing cost is low, easy to use, present ink-jet technology is mainly based on DOD.
In order to prevent the spray nozzle clogging of DOD, existing many improved methods.Usual method is to add wetting Agent for Printing Inks (as glycerine, ethylene glycol etc.) in ink, improves the solubleness of dyestuff in ink simultaneously.Behind the moisture evaporation in the ink, remaining mainly is not volatile above-mentioned wetting Agent for Printing Inks.Water-soluble good to contain the solubleness of sulfonic group dyestuff in above-mentioned wetting Agent for Printing Inks very low usually, and therefore, dyestuff is just separated out and stopped up shower nozzle.Know that when sulfonic group was sodium-salt form on the dye molecule, dyestuff is the easiest separating out and plug nozzle.Therefore, there are many patents that sodium salt is converted to the form of other salt, are converted into sylvite as United States Patent (USP) 5069718; United States Patent (USP) 4685968 is converted to the trolamine quaternary ammonium salt; United States Patent (USP) 4761180,5534051,5858075 is converted to tetramethyl ammonium salt etc.After the sodium salt conversion, the solubleness of dyestuff in the wetting Agent for Printing Inks system is increased, prevent that dyestuff from separating out, reduce the danger of plug nozzle.
At present, in the DOD ink-jet technology, in the particularly common spray ink Printing, the hot ink-jet technology of normal use, promptly the ink that arrives nozzle by micropore is vaporized rapidly and produce bubble (being called foaming type) by heating, along with expanding of bubble, the ink of jet hole is extruded and becomes little drop, sprays to matrixes such as paper, cloth.
Adding of nozzle, pine for decomposing because the dyestuff in the ink is everlasting, and produces carbonization and gather, thereby stop up shower nozzle, and this is the Another reason that shower nozzle stops up.Its consequence is to cause shower nozzle discarded.Facts have proved, the sulfonic positively charged ion of water-soluble dye has material impact to bringing out this class obstruction, and sodium ion sulfonic acid dyestuff is minimum with respect to potassium, ammonium, organic ammonium salt to this class infringement of nozzle, and promptly other except that sodium ion all easily produces thermolysis and carbon distribution to ion.
Therefore on the solvability and heat-resistant stability of dyestuff, the result of contradiction has appearred in sodium ion to the effect of dyestuff.Thereby United States Patent (USP) 5069718,4685968,4761180,5534051,5858075 etc. all with the conversion and control of sodium ion in certain ratio, in the 25-75% scope, reaching preferable relatively effect, but this contradiction still is not solved.
Summary of the invention
The objective of the invention is to use a kind of novel ink-jet dyestuff, dye molecule includes the group that wetting Agent for Printing Inks is had solublization, make dyestuff can be because of the solubleness in wetting Agent for Printing Inks low separating out, stop up shower nozzle, the sulfonic group of dyestuff, remains under the heat effect dyestuff and is difficult for carbon distribution still based on sodium ion ion simultaneously.
Technical scheme of the present invention is, contains the many oxyethyl groups group that has certain similarity with wetting Agent for Printing Inks in the dye molecule of use, and dye structure is as follows.
Yellow dyes as:
Figure A0311151700061
R among formula I, the II 1=CH 3, COOH etc.; R 2=H, Cl etc.; R 3=Cl, O (CH 2CH 2O) nH, NH (CH 2CH 2O) nH, N[(CH 2CH 2O) nH] 2, R 10R 4=O (CH 2CH 2O) nH, NH (CH 2CH 2O) nH, N[(CH 2CH 2O) nH] 2Deng; R 5=H, SO 3M etc.; R 6=H, CH 3, NH 2, NHCOCH 3Deng; M=H, Li, Na, K, NH 4, N (CH 3) 4, NH 3(CH 2CH 2OH), NH 2(CH 2CH 2OH) 2, NH (CH 2CH 2OH) 3Deng; R 10=m-NHC 6H 4-SO 2CH 2CH 2R 4, p-NHC 6H 4SO 2CH 2CH 2R 4Deng; N=0-8 etc.
Magenta dye as:
Figure A0311151700071
R among formula III, the IV 3, R 4, M is same as described above, R 7=H, CH 3Deng; R 8=H, SO 3M, COOM etc.; L=-(CH 2) n-, o-C 6H 4-, m-C 6H 4-, p-C 6H 4-, L 1, L 2Deng.
Blue, cyan dye as:
Figure A0311151700081
R among formula V, VI, the VII 3, R 4, M is same as described above, R 9=H, CH 3, C 2H 5, CH 2CH 2OH etc.; X=1,2,3; Y=1,2,3.
Black dyes as: R among formula VIII, IX, the X 3, R 4, M is same as described above, M 1=Co, Cr etc.
The synthetic method of the azoic dyestuff of the synthetic available routine of azoic dyestuff in the above-mentioned dyestuff.As earlier will be with amino component Sodium Nitrite diazotization, in the diazonium salt that the obtains adding coupling component, the azoic dyestuff (intramolecularly has amino) that forms is reacted with cyanuric chloride again, form the azoic dyestuff of band cyanuric chloride, adding contains H-R again 3, H-R 4, NH 2-L-NH 2React Deng compound, get final product dyestuff I, II, III, IV.The synthetic of dyestuff V is with 1-amino-4-bromo-9, and the 10-anthraquinone-2-sulfonic acid is a basic raw material, and warp is with 2, and the condensation of 4-diamino benzene sulfonic acid is again with the cyanuric chloride reaction, then with H-R 3, H-R 4The reaction and get.Dyestuff VI, VII are to be raw material with the phthalocyanine, through chlorosulphonation, many chlorosulfonyls phthalocyanine, then with H-R 3Reaction forms dyestuff VI; With m-amino-phenyl-beta-hydroxyethyl sulfone sulfate or p-amino-phenyl-beta-hydroxyethyl sulfone sulfate reaction, again with H-R 4Reaction just gets dyestuff VII.H-acid (being 1-amino-8-hydroxyl naphthalene-3, the 6-disulfonic acid) and diazotizing p-amino-phenyl-beta-hydroxyethyl sulfone sulfate are carried out the secondary coupled reaction, again with two molecule H-R 3Reaction promptly gets dyestuff VIII.With 2-amino-4-nitrophenols diazotization, with H-acid coupling, then with chromium alum, rose vitriol complexing, again with the cyanuric chloride reaction, last and H-R 3, H-R 4Reaction promptly gets dyestuff IX.With 4-amino-3-hydroxyl-6-p-methoxy-phenyl-beta-hydroxyethyl sulfone sulfate diazotization, with r-acid (being 1-hydroxyl-7-amino naphthalenes-3-sulfonic acid) coupling, again with the amino diazotization of r-acid moieties, with 1-(4 '-sulfonic group phenyl)-3-methyl-5-pyrazolone coupling, the tetrazo compound that obtains again with copper sulfate complexing, last and H-R 4Reaction promptly gets dyestuff X.About the ordinary method of the reactions such as condensation of diazotization, coupling, metal complex and the cyanuric chloride of azoic dyestuff in synthetic can be shown Chemical Industry Press (1991) with reference to " reactive dyestuffs " Hou Yufen, journey companion cypress; " metallized dye " opens million foot of a hill or mountain, Zhang Yuzhen work, Chemical Industry Press (1986) etc.Dyestuff need be further purified before use, as utilizes methods such as conventional ion-exchange, reverse osmosis to remove impurity such as inorganic salt.
In ink for ink-jet print, contain dyestuff 0.5-10%.In addition, also following component should be arranged:
1. low-boiling point alcohol: as 0-10% such as ethanol, propyl alcohol, Virahols; 2. 2-20% such as wetting Agent for Printing Inks or high boiling point water-miscible organic solvent such as ethylene glycol, propylene glycol, butyleneglycol, pentanediol, glycerine, glycol ether and ether thereof, Triethylene glycol and ether thereof, tetraethylene-glycol and ether thereof, polyoxyethylene glycol, polyvinyl alcohol, 2-Pyrrolidone, N-Methyl pyrrolidone; 3. sterilant 0-2%; 4. tensio-active agent 0.001-3%; 5. pH buffer reagent, regulating pH according to the solvent property of dyestuff is 6.5-9.5; 6. other auxiliary agent is as 0.001-2% metal chelating agent etc.; 7. water, content is 60-95%.
The dyestuff preparation can at room temperature be carried out, if dissolution rate is slow, can be heated to 50 ℃ or higher temperature preparation down.Join dye solution through the membrane filtration of≤0.4 micron pore size, be preferably≤0.2 micron, excessive particle can cause shower nozzle to stop up.Filtering ink all should carry out in clean room in packing and last handling process, prevents that dust from entering ink and stopping up shower nozzle.
Effect of the present invention and benefit are: contain the dyestuff that wetting Agent for Printing Inks is had the group of solublization in this quasi-molecule by using, after making the moisture evaporation of dyestuff in ink, thereby can low separating out not stop up shower nozzle because of the solubleness in wetting Agent for Printing Inks, the sulfonic group of dyestuff, remains under the heat effect dyestuff and is difficult for carbon distribution still based on sodium ion ion simultaneously.Thereby can eliminate the two big Hazard Factor that hot inkjet head damages, prolong the work-ing life of shower nozzle.
Embodiment
Below be described in detail most preferred embodiment of the present invention.
Example 1. yellow R's is synthetic
General structure II, R 3, R 4Be NHCH 2CH 2OH, R 5Be H, R 6Be CH 3, M is Na.
Diazotization: the 3-amino-1 of adding about 10% in reactor, 5-two naphthene sulfonic acid (are amino C-acid, contain 100%151.5 parts) solution, start stirring, regulate pH=4.5-4.8, on the rocksly be cooled to 12 ℃ with hydrochloric acid, add 152 parts of 30% hydrochloric acid, in 1-2 minute, add 30-35% sodium nitrite solution (containing 100%34.5 parts) fast, 18 ℃ of temperature, it is little excessive to control nitrous acid at last.Stirred 30 minutes, diazonium finishes.Add 56.2 parts of meta-aminotoluenes, regulate pH=4.5-5.1, stirred 3 hours, be controlled at and slowly be raised to 75 ℃ in 3 hours with 20% soda ash liquid, static 10 minutes, remove oily matter on the face, add 25% sodium-chlor by volume, stir 2 hours blowings, filter cake is got in press filtration.
Coupling: in reactor, add about 900 parts in water, be warming up to 40 ℃, add the color base filter cake, allocate pH=6.8-7.1 with soda ash, color base is all dissolved, stirred 2 hours, by volume add 0.5% gac and 0.5% lime carbonate, restir 30 minutes filters, and can get monoazo-dyes filtrate.
Condensation: in reactor, add 300 parts of frozen water, cyanuric chloride (monoazo-dyes and cyanuric chloride mol ratio=1: 1.03), stirred 30 minutes at 0-2 ℃, add monoazo-dyes solution, temperature is below 10 ℃, with tertiary sodium phosphate hydraulic control system pH=6.5-6.7, stirred 2 hours, and in 4 hours, slowly be warmed up to 40 ℃ then, add 55 parts of thanomins, be warmed up to 90-95 ℃ 45-50 ℃ of reaction after 5 hours, under this temperature, continue reaction 5 hours, use tertiary sodium phosphate hydraulic control system pH=6.5-6.7 simultaneously.Adjust volume to 4200 part, add 10% sodium-chlor by volume, saltout for 40-45 ℃, stirred the blowing filtration 1 hour.Filter cake gets the yellow R of dyestuff 75-80 ℃ of oven dry.
Example 2. blue BR's is synthetic
General structure V, R 3, R 4Be NHCH 2CH 2OH, R 9Be H, M is Na.
500 parts of water (volume) are warming up to 85 ℃ under stirring, add pulpous state bromamine acid (be 1-amino-4-bromo-2-naphthene sulfonic acid, contain 100%191 parts), stir and make into unit for uniform suspension.Add 2,4-diamino benzene sulfonic acid (containing 100%112.8 parts) slowly adds sodium bicarbonate (containing 100%200 parts) again, 85 ℃ of following insulated and stirred 30 minutes, and adding does not have the cuprous chloride solution (containing 100%10 parts) that free S-WAT exists.In the reaction process, temperature is 83-85 ℃, and pH remains on 9, and stirring reaction 3 hours begins to survey terminal point.Launch in water with the paper chromatograph, bromamine acid disappears and is terminal point.Stirred 2 hours down in 90 ℃, thin up to 4500 part (volume) stirred 15 minutes again.Add 150 parts of light calcium carbonates, 75-80 ℃ was stirred 30 minutes down, and filtered while hot is removed the secondary dyestuff of purple.Solution under agitation with hcl acidifying to pH=2.The salt that adds volume 10-15%, stirs 1-2 hour to ooze enclose colourless.Press filtration must be made with extra care filter cake.Add 1000 parts in water, add 30 parts of soda ash, add above-mentioned refining filter cake after the stirring and dissolving, adjusting volume is 3000 parts, and pH is 7.5, stirs and makes whole dissolvings.
3000 parts of water added an amount of ice, add cyanuric chloride 0.44mol, stirring to pulp below 0 ℃ 45 minutes.Above-mentioned dye liquor (0.55mol) is added, and stirring down, adjusted volume is 4500 parts.15 ℃ were reacted 1 hour down, and adding solid phosphoric acid trisodium control pH is 6.5, continue to stir 3 hours, and pH=6.3-6.5 during terminal point, temperature is lower than 18 ℃, removes by filter impurity.
Filtrate adds urea (0.44mol) down in stirring, in 1 hour, evenly be warming up to 43 ℃, slowly be warmed up to 40 ℃ again, add 70 parts of thanomins, be warmed up to 90-95 ℃ after 5 hours 45-50 ℃ of reaction, under this temperature, continue reaction 5 hours, use tertiary sodium phosphate hydraulic control system pH=6.5-6.7 simultaneously, add the salt of 20% (volume), slowly cooling in 5 hours, be incubated to 40-42 ℃, stirred 2 hours.It is clear that solution filter paper oozes circle, blowing, and press filtration, filter cake gets 450 parts of blue BR dyestuffs in 80-85 ℃ of oven dry down.
The black R's of example 3. complexings is synthetic
General structure IX, R 3, R 4Be NHCH 2CH 2OH, M are Na, M 1Be Co.
900 parts of water adds 77.7 parts of 4-nitros-2-amino-phenol, and transferring pH with hydrochloric acid earlier is 3-3.5, adds 73.6 parts of 30% hydrochloric acid again, adds 30-35% sodium nitrite solution (100%38 parts) gradually under 5 ℃, and is little excessive at 10 ℃ of following Sodium Nitrites, stirred 30 minutes.Add 100%8 parts of sodium-acetates, be neutralized to pH=3.5-4, carry out coupling immediately.
20%H-acid solution (100%187.6 parts) and sodium bicarbonate (95%45 parts) stir down and are chilled to below 5 ℃, adjust volume to 2000 part, add diazonium salt, and under 8-10 ℃, pH=6.3-6.8 reacted 6 hours, and the diazonium salt disappearance is terminal point.Be warming up to 60 ℃, add 20% (volume) salt, stirred 1 hour, 60 ℃ of following press filtrations, filter cake is incorporated in 1800 parts of hot water, pulls an oar 3 hours.
Dye suspensions adds 30% caustic soda (100%40 parts), is heated to 80 ℃ under stirring, and adds cobalt sulfate solution, and dyestuff and rose vitriol mol ratio are 1: 0.56, adds doubly 60 ℃ of hot water dissolvings of 2-3, seethes with excitement 1 hour.The ply of paper folding is checked terminal point, is chilled to room temperature, is neutralized to pH=6.8-7.0 with 10% hydrochloric acid.
300 parts of dye solutions, ice and cyanuric chloride add itself and dye solution in making beating below 0 ℃ 30 hours again in right amount, and temperature is lower than 5 ℃, and dyestuff and cyanuric chloride mol ratio are 1: 1.1.Reaction is 1 hour under this temperature, adds 20% soda ash control pH=7-7.5, continues reaction 3 hours.Add thanomin, dyestuff and thanomin mol ratio are 1: 2.5, slowly are warming up to 40-45 ℃ in 1 hour, reaction to 4 hour is warmed up to 90-95 ℃ again, continues reaction 5 hours under this temperature, use tertiary sodium phosphate hydraulic control system pH=6.5-6.7 simultaneously, 20% salt that adds volume is saltoutd.40-45 ℃ was stirred 2 hours, press filtration, and 85 ℃ of oven dry down get the black R dyestuff of complexing.
Example 4. yellow ink
2 gram dyestuffs yellow R (general structure II, R with purifying 3, R 4Be NHCH 2CH 2OH, R 5Be H, R 6Be CH 3M is Na) be dissolved in 85 milliliters of 50 ℃ of water, add 5 milliliters of ethylene glycol, 3 milliliters of glycol ethers, 2 milliliters of ethanol, 3 milliliters of 2-Pyrrolidones, 0.5 milliliter of 20%NP-10 (tensio-active agent), stir evenly the PC membrane filtration of back with 0.2 micron pore size, filtrate is stability and reaches 2 years, do not stop up the yellow ink that carbon distribution obviously improves on shower nozzle, the shower nozzle, can be used for the color ink jet printed and color painting of piezoelectricity and foaming type.
Example 5. magenta inks
The red B of 4 gram dyestuffs (general structure IV, R with purifying 4Be NHCH 2CH 2OH, R 7Be CH 3, R 8Be SO 3Na, M are Na, and L is p-C 6H 4-) be dissolved in 83 milliliters of 50 ℃ of water, add 5 milliliters of ethylene glycol, 3 milliliters of glycol ethers, 2 milliliters of ethanol, 3 milliliters of 2-Pyrrolidones, 0.3 milliliter of 20%NP-10 (tensio-active agent), regulate pH=8.0, stir evenly the PC membrane filtration of back with 0.2 micron pore size, filtrate is magenta ink, be used for the color ink jet printed and color painting of piezoelectricity and foaming type, stability reaches 2 years, do not stop up that carbon distribution obviously improves on shower nozzle, the shower nozzle.
Example 6. black inks
6 gram complexings black R (general structure IX, R with purifying 3, R 4Be NHCH 2CH 2OH, M are Na, M 1Be Co) be dissolved in 80 milliliters of 50 ℃ of water, add 5 milliliters of ethylene glycol, 3 milliliters of glycol ethers, 2 milliliters of ethanol, 3 milliliters of 2-Pyrrolidones, 0.3 milliliter of 20%NP-10 (tensio-active agent), regulate pH=8.0, stir evenly the PC membrane filtration of back with 0.2 micron pore size, filtrate is black ink, be used for the color ink jet printed and color painting of piezoelectricity and foaming type, stability reaches 2 years, do not stop up that carbon distribution obviously improves on shower nozzle, the shower nozzle.

Claims (3)

1. a class Water-based ink-jet dye is the water-soluble dye that is used to make spray ink Printing, air brushing and ink-jet printing of fabric China ink, it is characterized in that: contain R in dye molecule 3Or R 4Dyestuff, R wherein 3Be O (CH 2CH 2O) nH, NH (CH 2CH 2O) nH, N[(CH 2CH 2O) nH] 2, R 10R 4Be O (CH 2CH 2O) nH, NH (CH 2CH 2O) nH, N[(CH 2CH 2O) nH] 2R 10Be m-NHC 6H 4-SO 2CH 2CH 2R 4, p-NHC 6H 4SO 2CH 2CH 2R 4N=0-8.
2. a class Water-based ink-jet dye according to claim 1 is characterized in that: dyestuff contains following general structure I-X:
Yellow dyes as: R among formula I, the II 1=CH 3, COOH etc.; R 2=H, Cl etc.; R 3=Cl, O (CH 2CH 2O) nH, NH (CH 2CH 2O) nH, N[(CH 2CH 2O) nH] 2, R 10R 4=O (CH 2CH 2O) nH, NH (CH 2CH 2O) nH, N[(CH 2CH 2O) nH] 2Deng; R 5=H, SO 3M etc.; R 6=H, CH 3, NH 2, NHCOCH 3Deng; M=H, Li, Na, K, NH 4, N (CH 3) 4, NH 3(CH 2CH 2OH), NH 2(CH 2CH 2OH) 2, NH (CH 2CH 2OH) 3Deng; R 10=m-NHC 6H 4-SO 2CH 2CH 2R 4, p-NHC 6H 4SO 2CH 2CH 2R 4Deng; N=0-8 etc.
Magenta dye as: R among formula III, the IV 3, R 4, M is same as described above, R 7=H, CH 3Deng; R 8=H, SO 3M, COOM etc.; L=-(CH 2) n-, o-C 6H 4-, m-C 6H 4-, p-C 6H 4-, L 1, L 2Deng.
Blue, cyan dye as:
Figure A0311151700032
R among formula V, VI, the VII 3, R 4, M is same as described above, R 9=H, CH 3, C 2H 5, CH 2CH 2OH etc.; X=1,2,3; Y=1,2,3.
Black dyes as:
Figure A0311151700033
R among formula VIII, IX, the X 3, R 4, M is same as described above, M 1=Co, Cr etc.
3. a class Water-based ink-jet dye according to claim 1, it is characterized in that when being used to prepare ink, use the wherein mixture of one or more dyestuffs, other composition that is used with the dyestuff of being invented is the mixture of one or more following components: ethylene glycol, glycerine, propylene glycol, butyleneglycol, pentanediol, hexylene glycol, glycol ether or its C 1-4Ether, Triethylene glycol or its C 1-4Ether, tetraethylene-glycol or its C 1-4Ether, polyoxyethylene glycol, 2-Pyrrolidone, N-Methyl pyrrolidone, ethanol, propyl alcohol, Virahol, tensio-active agent, sterilant, water.
CN 03111517 2003-04-18 2003-04-18 Water-based ink-jet dye Expired - Fee Related CN1204211C (en)

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN100455633C (en) * 2005-12-31 2009-01-28 大连理工大学 Anti-oscillate ink-jet dye and ink thereof
CN102911510A (en) * 2012-10-25 2013-02-06 上海贝通色彩科技有限公司 Ink-jet dye compound and preparation method thereof
CN107163685A (en) * 2017-06-01 2017-09-15 绍兴柯桥越强助剂有限公司 A kind of preparation method of ink-jet printed Thief zone reactive dye ink
CN109810560A (en) * 2019-01-16 2019-05-28 深圳市墨库图文技术有限公司 A kind of ink-jet ink and preparation method thereof suitable for photo printing

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN100381634C (en) * 2005-12-16 2008-04-16 上海印能数码科技有限公司 Ink-jet ink of digit printing active dye for textiles and production Tech. thereof

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN100455633C (en) * 2005-12-31 2009-01-28 大连理工大学 Anti-oscillate ink-jet dye and ink thereof
CN102911510A (en) * 2012-10-25 2013-02-06 上海贝通色彩科技有限公司 Ink-jet dye compound and preparation method thereof
CN102911510B (en) * 2012-10-25 2014-05-28 上海贝通色彩科技有限公司 Ink-jet dye compound and preparation method thereof
CN107163685A (en) * 2017-06-01 2017-09-15 绍兴柯桥越强助剂有限公司 A kind of preparation method of ink-jet printed Thief zone reactive dye ink
CN109810560A (en) * 2019-01-16 2019-05-28 深圳市墨库图文技术有限公司 A kind of ink-jet ink and preparation method thereof suitable for photo printing

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