WO2013120878A1 - Alkaline earth metal-complexed metal amides - Google Patents
Alkaline earth metal-complexed metal amides Download PDFInfo
- Publication number
- WO2013120878A1 WO2013120878A1 PCT/EP2013/052833 EP2013052833W WO2013120878A1 WO 2013120878 A1 WO2013120878 A1 WO 2013120878A1 EP 2013052833 W EP2013052833 W EP 2013052833W WO 2013120878 A1 WO2013120878 A1 WO 2013120878A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- formula
- process according
- metal
- group
- substituted
- 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
- 0 CC1(C)N(*)C(C)(C)CCC1 Chemical compound CC1(C)N(*)C(C)(C)CCC1 0.000 description 1
Classifications
-
- C—CHEMISTRY; METALLURGY
- C07—ORGANIC CHEMISTRY
- C07F—ACYCLIC, CARBOCYCLIC OR HETEROCYCLIC COMPOUNDS CONTAINING ELEMENTS OTHER THAN CARBON, HYDROGEN, HALOGEN, OXYGEN, NITROGEN, SULFUR, SELENIUM OR TELLURIUM
- C07F3/00—Compounds containing elements of Groups 2 or 12 of the Periodic Table
- C07F3/06—Zinc compounds
-
- C—CHEMISTRY; METALLURGY
- C07—ORGANIC CHEMISTRY
- C07D—HETEROCYCLIC COMPOUNDS
- C07D211/00—Heterocyclic compounds containing hydrogenated pyridine rings, not condensed with other rings
- C07D211/04—Heterocyclic compounds containing hydrogenated pyridine rings, not condensed with other rings with only hydrogen or carbon atoms directly attached to the ring nitrogen atom
- C07D211/06—Heterocyclic compounds containing hydrogenated pyridine rings, not condensed with other rings with only hydrogen or carbon atoms directly attached to the ring nitrogen atom having no double bonds between ring members or between ring members and non-ring members
- C07D211/08—Heterocyclic compounds containing hydrogenated pyridine rings, not condensed with other rings with only hydrogen or carbon atoms directly attached to the ring nitrogen atom having no double bonds between ring members or between ring members and non-ring members with hydrocarbon or substituted hydrocarbon radicals directly attached to ring carbon atoms
- C07D211/10—Heterocyclic compounds containing hydrogenated pyridine rings, not condensed with other rings with only hydrogen or carbon atoms directly attached to the ring nitrogen atom having no double bonds between ring members or between ring members and non-ring members with hydrocarbon or substituted hydrocarbon radicals directly attached to ring carbon atoms with radicals containing only carbon and hydrogen atoms attached to ring carbon atoms
- C07D211/12—Heterocyclic compounds containing hydrogenated pyridine rings, not condensed with other rings with only hydrogen or carbon atoms directly attached to the ring nitrogen atom having no double bonds between ring members or between ring members and non-ring members with hydrocarbon or substituted hydrocarbon radicals directly attached to ring carbon atoms with radicals containing only carbon and hydrogen atoms attached to ring carbon atoms with only hydrogen atoms attached to the ring nitrogen atom
Definitions
- the present invention relates to metal amides of the formula (I), to a process for preparation thereof and to the use thereof as bases for metallation of aromatics, heteroaromatics, alkenes, alkynes and other organic compounds having activated C-H bonds.
- zinc amide bases can be stored under protective gas as solutions in THF for weeks, without losing their activity.
- amines for example TMP
- butyllithium For synthesis of the bases, typically amines, for example TMP, are lithiated with equimolar amounts of butyllithium. Owing to the high cost of butyllithium, zinc amide bases are too expensive for a multitude of industrial syntheses. There is therefore an urgent need for a more favourable route to metal amide bases, especially dispensing with the use of expensive butyllithium.
- AE is an alkaline earth metal selected from calcium and magnesium
- M is a metal selected from metals from groups 3, 4, 7, 8, 9, 10, 11, 12, 13 of the Periodic Table of the Elements (PTE) and the group of the lanthanoids;
- X is a halogen atom selected from the group consisting of fluorine, chlorine, bromine and iodine;
- Pv 1 and R 2 are each independently selected from the group consisting of (C i-C8)alkyl optionally substituted by 1 -2 R 3 radicals;
- Pv 1 and Pv together form a -(CEh , -(03 ⁇ 4)5- or -(CH2)20(CH2)2- group, where each of these groups may optionally be substituted by 1-4 R 4 radicals;
- R 3 is independently selected from halogen, (C i-C3)alkoxy, (C i -C3)haloalkoxy and (C2-C4)dialkylamino;
- R is selected from halogen, (C i-C3)alkyl, (C i-C3)alkoxy, (C i-C3)haloalkoxy and (C2-C4)dialkylamino, by reaction of chloroamines of the formula (II)
- R 1 and R 2 radicals are each as defined above with one or more metallic (i.e. present in elemental form) alkaline earth metals (AE) and/or one or more metals (M) (i.e. in elemental form), where AE and M are each as defined above.
- the process according to the invention does not need butyllithium.
- chloroamines of the above-defined formula (II) are reacted with metallic alkaline earth metals (AE) and optionally the halides thereof in the presence of a metal (M) (in elemental form) and/or the corresponding metal halide (M n+ X ⁇ n ).
- the index n in any metal halide (M n+ X " n ) used in the process according to the invention is an integer corresponding to the valency of the metal ion of the metal (M).
- chloroamines of the above-defined formula (II) are reacted with a metal (M) in elemental form and optionally the corresponding metal halide (M n+ X " n ) in the presence of metallic magnesium, metallic calcium, magnesium halides and/or calcium halides, preference being given to using, for each equivalent of the chloroamine of the formula (II), a total of 1 equivalent or more of metal (M) in elemental form, further preference to using 1.5 equivalents or more, particular preference to using 2 equivalents or more.
- chloroamines of the above-defined formula (II) are reacted with metallic alkaline earth metal (AE) (i.e. metallic magnesium and / or metallic calcium) in the presence of metal (M) in elemental form, where M is as defined above, optionally in the presence of the magnesium halide and/or calcium halide and optionally of the metal halide (M n+ X " n ), preference being given to using, for each equivalent of the chloroamine of the formula (II), a total of 0.8 equivalent or more of metallic alkaline earth metal (AE), further preference to using 1.0 equivalent or more.
- AE metallic alkaline earth metal
- chloroamines of the above-defined formula (II) are reacted with metallic magnesium and / or metallic calcium in the presence of an excess of the metal halide (M n+ X " n ), where M and X are each as defined above, optionally in the presence of the magnesium halide and / or calcium halide and optionally of the metal (M).
- the present invention further provides the metal amides of the formula (I) obtainable by the process according to the invention
- Alkyl means a straight-chain, branched or cyclic hydrocarbyl radical.
- (Ci-C -alkyl) is a brief notation for alkyl having one to 4 carbon atoms according to the range stated for carbon atoms and encompasses, for example, the methyl, ethyl, 1 -propyl, 2-propyl, 1 -butyl, 2-butyl, 2- methylpropyl, tert-butyl, cyclopropyl and cyclobutyl radicals.
- hydrocarbon radicals such as alkyl radicals, including in composite radicals
- Alkyl radicals including in the composite radicals such as alkoxy, haloalkyl etc., mean, for example, methyl, ethyl, cyclo-, n- or i-propyl, cyclo-, n-, i-, t- or 2-butyl, pentyls, hexyls such as cyclohexyl, n-hexyl, i-hexyl and 1,3-dimethylbutyl, heptyls such as cycloheptyl, n-heptyl, 1 -methylhexyl and 1 ,4-dimethylpentyl.
- Preferred cyclic alkyl radicals preferably have 3-8 ring carbon atoms, for example cyclopropyl, cyclobutyl, cyclopentyl or cyclohexyl.
- cyclic systems with substituents are included, also including substituents with a double bond on the cyclic alkyl radical, for example an alkylidene group such as methylidene.
- polycyclic aliphatic systems are also included, such as bicyclo[1.1.0]butan-l -yl, bicyclo[1.1.0]butan-2-yl, bicyclo[2.1.0]pentan-l-yl, bicyclo[2.1.0]pentan- 2-yl, bicyclo[2.1.0]pentan-5-yl, bicyclo[2.2.1]hept-2-yl (norbornyl), adamantan-l -yl and adamantan-2-yl.
- spirocyclic aliphatic systems are also included, for example spiro[2.2]pent-l-yl,
- Aryl is a mono-, bi- or polycyclic aromatic system having preferably 6 to 14, especially 6 to 10, ring carbon atoms, for example phenyl, indanyl, naphthyl, anthryl, phenanthrenyl and the like, preferably phenyl.
- first substituent level may, if they contain hydrocarbonaceous moieties, optionally be further substituted therein (“second substituent level”), for example by one of the substituents as defined for the first substituent level.
- second substituent level may, if they contain hydrocarbonaceous moieties, optionally be further substituted therein, for example by one of the substituents as defined for the first substituent level.
- substituent levels are possible.
- substituted radical preferably embraces just one or two substituent levels. Preferred substituents for the substituent levels are, for example,
- halogen nitro, cyanoalkyl, dialkylamino, alkoxy, aryl, aryloxy, benzyl, benzyloxy, heterocyclyl and trialkylsilyl.
- Substituents composed of more than one substituent level are preferably, for example, alkoxyalkyl such as monoalkoxyalkyl or dialkoxyalkyl, alkoxyalkoxy such as monoalkoxyalkoxy or dialkoxyalkoxy, benzyl, phenethyl, benzyloxy, haloalkyl, haloalkoxy, haloalkoxyalkoxy, haloalkoxyalkyl.
- radicals having carbon atoms preference is given to those having 1 to 6 carbon atoms, preferably 1 to 4 carbon atoms, especially 1 or 2 carbon atoms.
- substituents from the group consisting of halogen, for example fluorine and chlorine, (C i-C 4 )alkyl, preferably methyl or ethyl, (Ci-C 4 )haloalkyl, preferably trifluoromethyl, (Ci-C 4 )alkoxy, preferably methoxy or ethoxy, (Ci- C 4 )haloalkoxy, nitro and cyano.
- substituents methyl, methoxy, fluorine and chlorine.
- Substituted amino such as mono- or disubstituted amino is a radical from the group of the substituted amino radicals which are N-substituted, for example, by one or two identical or different radicals from the group of alkyl, alkoxy and aryl; preferably dialkylamino and diarylamino, such as optionally substituted N-alkyl-N- arylamino, and saturated N-heterocycles; preference is given to alkyl radicals having 1 to 4 carbon atoms; aryl is preferably phenyl or substituted phenyl.
- Optionally substituted phenyl is preferably phenyl which is unsubstituted or mono- or polysubstituted, preferably up to trisubstituted, by identical or different radicals from the group of halogen, (Ci-C 4 )alkyl, (Ci-C 4 )alkoxy, (Ci-C 4 )alkoxy-(Ci-C 4 )alkoxy, (Ci-C 4 )alkoxy-(Ci-C 4 )alkyl, (Ci-C 4 )haloalkyl, (Ci- C 4 )haloalkoxy, cyano and nitro, e.g.
- Optionally substituted heterocyclyl is preferably heterocyclyl which is unsubstituted or mono- or polysubstituted, preferably up to trisubstituted, by identical or different radicals from the group of halogen, cyano, (Ci-C 4 )alkyl, (Ci-C 4 )alkoxy, (Ci-C 4 )alkoxy-(C i-C 4 )alkoxy, (Ci-C 4 )alkoxy-(Ci-C 4 )alkyl, (Ci- C 4 )haloalkyl, (Ci-C 4 )haloalkoxy, nitro and oxo, and is especially mono- or polysubstituted by radicals from the group of halogen, (Ci-C4)alkyl, (Ci-C4)alkoxy, (Ci-C4)haloalkyl and oxo, very particularly by one or two (Ci-C4)alkyl radicals.
- Haloalkyl is alkyl partly or fully substituted by identical or different halogen atoms, for example monohaloalkyl such as CH 2 CH 2 C1, CH 2 CH 2 F, CHC1CH 3 , CHFCH3, CH 2 C1, CH 2 F; perhaloalkyl such as CCI3 or CF 3 or CF 2 CF 3 ; polyhaloalkyl such as CHF 2 , CH 2 F, CH 2 CHFC1, CHC1 2 , CF 2 CF 2 H, CH 2 CF 3 ; haloalkoxy is, for example, OCF 3 , OCHF 2 , OCH 2 F, OCF 2 CF 3 , OCH 2 CF 3 and 0CH 2 CH 2 C1.
- monohaloalkyl such as CH 2 CH 2 C1, CH 2 CH 2 F, CHC1CH 3 , CHFCH3, CH 2 C1, CH 2 F
- perhaloalkyl such as CCI3 or CF 3 or CF 2 CF 3
- Organic compounds having activated C-H bonds are molecules having an increased tendency to release a hydrogen atom bonded to a carbon atom as protons, and hence, in a formal sense, to act as an acid. This is the case, for example, when the carbon atom is bonded to strongly electron- withdrawing groups such as carbonyls (in an ester, ketone or aldehyde), sulphones, nitriles, trifluoromethyl groups or nitro groups.
- strongly electron- withdrawing groups such as carbonyls (in an ester, ketone or aldehyde), sulphones, nitriles, trifluoromethyl groups or nitro groups.
- derivatives of malonic acid (pKa ⁇ 13) or acetylacetone (pKa ⁇ 9) have activated C-H bonds.
- formula (I) also encompasses all tautomers and/or oligomeric or polymeric complexes present in equilibrium, in which coordinating solvents may optionally also be involved in the structures formed.
- the bond may be formed either via the halides X or via the nitrogen atoms.
- the AE-complexed metal amides of the formula (I) obtainable by the process according to the invention are especially suitable for metallation under mild conditions. They are therefore particularly suitable for conversion of sensitive (hetero)aromatics and are tolerated by sensitive functional groups, for example nitro, aldehyde or F, which is frequently not the case for the corresponding lithium or magnesium bases.
- TMPZnCl-LiCl has been described in the literature as a mild base for the metallation of sensitive (hetero)aromatics at temperatures around 20°C (see Org. Lett. 2009, 11 (8), 1837-1840). In in-house studies, however, it was found that, for example, the metallation of the sensitive heteroaromatic 4,6-dichloro-5- nitropyrimidine with TMPZnCl-LiCl at 20°C and the subsequent reaction with an electrophile such as iodine led to the destruction of the 4,6-dichloro-5 -nitropyrimidine.
- the chloroamines of the formula (II) can be obtained by the methods described in the prior art, for example in Bodor et al. Jour. Pharm. Sci. 1974, 63, 1387; Kovacic et al., Chemical Reviews 1970, 70, 6, 639; Zakrzewski et al, Synthetic Communications 1988, 18(16&17), 2135; J.Org. Chem. 1997, 62, 16, 5631. Preference is given to effecting the synthesis by reacting the corresponding secondary amines with hypochlorites, as described in JACS, 1973, 6400 or by Toshimasa et al. Bull. Chem. Soc. Jap., 1972, 45, 1802 and Deno et al. JACS 1971, 93, 2065.
- a preferred embodiment of the invention relates to the calcium- or magnesium-complexed metal amides of the formula (I), and to a process for preparation thereof, where
- AE is calcium or magnesium
- M is a metal selected from Sc, Ti, Mn, Fe, Co, Ni, Cu, Zn and Al;
- X is a halogen atom selected from chlorine and bromine
- R 1 and R 2 together form a -(CEb , -(03 ⁇ 4)5- -or -( ⁇ 3 ⁇ 4)20( ⁇ 3 ⁇ 4)2- group in which each of these groups may optionally be substituted by 1, 2, 3 or 4 R 5 radicals; therein,
- R 5 is selected from methyl, ethyl, n-propyl and i-propyl.
- a particularly preferred embodiment of the invention relates to the calcium- or magnesium-complexed metal amides of the formula (I), and to a process for preparation thereof, where
- AE is calcium or magnesium
- M is a metal selected from Ti, Mn, Fe, Zn and Al;
- X is a halogen atom selected from chlorine and bromine
- R 1 and R 2 together form a -(CH2)s- group substituted by 4 methyl groups.
- the present invention also relates to a AE-complexed metal amide of the formula (I-i)
- AE is selected from Ca and Mg
- M is a metal selected from Sc, Ti, Mn, Fe, Co, Ni, Cu, Zn and Al;
- X is a halogen atom selected from chlorine and bromine, preferably chlorine.
- AE is Ca or Mg.
- the process according to the invention is executed preferably within a temperature range from +20 to -20°C, preferably from + 10 to -10°C, more preferably from +5 to -5 °C .
- the reaction is preferably performed under protective gas atmosphere in an aprotic, anhydrous solvent selected from the group consisting of ethers and aromatics, or mixtures thereof.
- anhydrous solvent selected from the group consisting of ethers and aromatics, or mixtures thereof.
- Particular preference is given to using coordinating solvents, for example THF, 2-methyltetrahydrofuran, tert-butyl methyl ether, 1,2-dimethoxyethane or diethyl ether, or else mixtures thereof with aromatics, for example benzene, toluene, ethylbenzene or xylene, and/or else with alkanes or cycloalkanes or alkyl-substituted cycloalkanes, for example n-hexane, n-heptane, cyclohexane, isooctane or methylcyclohexane.
- the dilution of the reaction mixture is preferably adjusted such that the
- the reaction mixture can be separated from the metal residues by decantation or filtration.
- the combinations of the alkaline earth metal (AE) and halide thereof (EAX2) and the metal (M) and metal halide thereof (M n+ X ⁇ n ) are preferably used in excess.
- each equivalent of the chloroamine of the formula (II) up to 5 equivalents each, preferably up to 3 equivalents each, more preferably up to 2 equivalents each, of the alkaline earth metal (AE), of the metal (M), of the alkaline earth metal halide (EAX2) and/or of the metal halide (M n+ X " n ) are used.
- AE alkaline earth metal
- M metal
- EAX2 alkaline earth metal halide
- M n+ X " n ) metal n+ X " n .
- a total of at least 1.0 equivalent of the metal (M) and/or of the metal halide (M n+ X ⁇ n ) has to be used, it being particularly advantageous to dispense with the alkaline earth metal halide (EAX2).
- magnesium and calcium and/or halides thereof makes it possible to obtain mixtures of the compounds of the formula (I) which, owing to synergisms, may have advantages, for example elevated solubility.
- Metallic magnesium can be used in the reaction in the form of turnings, beads or powder. Owing to the high active surface area, magnesium powder is preferred.
- Metallic calcium is typically used in the reaction in the form of calcium powder.
- the calcium source used in the context of the present invention is preferably calcium fluoride, calcium chloride or calcium bromide, more preferably calcium chloride.
- Magnesium halides are selected from magnesium fluoride, magnesium chloride, magnesium bromide and magnesium iodide. Preference is given to using magnesium chloride or magnesium bromide, particular preference to using magnesium chloride.
- an activating reagent for example ⁇ - ⁇ 3 ⁇ 4 ⁇ 1 ⁇ (DIBAL-H), dibromoethane or iodine.
- the metals (M) used in the context of the present invention are selected from metals of groups 3, 4, 7, 8, 9, 10, 11, 12, 13 of the Periodic Table of the Elements (IUPAC nomenclature) or the halides thereof, preferably chlorides, and the group of the lanthanoids or the halides thereof, preferably chlorides; the metals (M) are preferably selected from Sc, Ti, Mn, Fe, Co, Ni, Cu, Zn and Al or the halides thereof, preferably chlorides; the metals (M) are more preferably selected from Ti, Mn, Fe, Zn and Al or the halides thereof, preferably chlorides.
- zinc (Zn) and zinc chloride (ZnCb) are of outstanding significance.
- manganese (Mn) and manganese halides are of outstanding significance.
- the present invention further provides for the use of the AE-complexed metal amides of the formula (I) obtainable according to a process of the present invention as bases for aromatics, heteroaromatics, alkenes, alkynes and other organic compounds with activated C-H bonds.
- the basicity, selectivity or activity thereof can be enhanced or advantageously influenced by addition of lithium salts, either in the course of preparation or in the course of use, for example lithium chloride, or by crown ethers or other coordinating reagents.
- magnesium powder 325 mesh - 1328 mg, 54.7 mmol
- zinc powder 3573 mg, 54.7 mmol
- DIBAL-H 0.5 ml, 1 M in THF
- magnesium powder (325 mesh - 1458 mg, 60 mmol) and zinc chloride (42.9 ml, 30 mmol, 0.7 M in THF) are initially charged and activated by addition of DIBAL-H (0.5 ml, 1 M in THF). After stirring for 5 min, the mixture is cooled to 0°C and the stirring is stopped.
Landscapes
- Chemical & Material Sciences (AREA)
- Organic Chemistry (AREA)
- Organic Low-Molecular-Weight Compounds And Preparation Thereof (AREA)
- Pyridine Compounds (AREA)
Priority Applications (10)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| JP2014557018A JP6163166B2 (ja) | 2012-02-17 | 2013-02-13 | アルカリ土類金属複合金属アミド |
| EP13704105.9A EP2814832B1 (en) | 2012-02-17 | 2013-02-13 | Alkaline earth metal-complexed metal amides |
| ES13704105.9T ES2563237T3 (es) | 2012-02-17 | 2013-02-13 | Amidas metálicas complejadas con metales alcalinotérreos |
| CN201380009649.3A CN104114561B (zh) | 2012-02-17 | 2013-02-13 | 碱土金属络合的金属氨基化物 |
| KR1020147022526A KR102014305B1 (ko) | 2012-02-17 | 2013-02-13 | 알칼리 토금속-착물화된 금속 아미드 |
| BR112014020032A BR112014020032B1 (pt) | 2012-02-17 | 2013-02-13 | amidas metálicas complexadas com metais alcalinoterrosos, seu uso e seu processo de preparação |
| MX2014009729A MX361997B (es) | 2012-02-17 | 2013-02-13 | Amidas metálicas complejadas con metales alcalinotérreos. |
| US14/378,537 US9079925B2 (en) | 2012-02-17 | 2013-02-13 | Alkaline earth metal-complexed metal amides |
| DK13704105.9T DK2814832T3 (en) | 2012-02-17 | 2013-02-13 | Alkaline earth metal complexed metal amides |
| IL233801A IL233801A (en) | 2012-02-17 | 2014-07-24 | Metallic amide in an alkaline earth metal complex |
Applications Claiming Priority (8)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| EP12155980 | 2012-02-17 | ||
| EP12155977 | 2012-02-17 | ||
| EP12155980.1 | 2012-02-17 | ||
| EP12155977.7 | 2012-02-17 | ||
| EP12171862 | 2012-06-13 | ||
| EP12171860.5 | 2012-06-13 | ||
| EP12171862.1 | 2012-06-13 | ||
| EP12171860 | 2012-06-13 |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2013120878A1 true WO2013120878A1 (en) | 2013-08-22 |
Family
ID=47714105
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/EP2013/052833 Ceased WO2013120878A1 (en) | 2012-02-17 | 2013-02-13 | Alkaline earth metal-complexed metal amides |
Country Status (12)
| Country | Link |
|---|---|
| US (1) | US9079925B2 (https=) |
| EP (1) | EP2814832B1 (https=) |
| JP (1) | JP6163166B2 (https=) |
| KR (1) | KR102014305B1 (https=) |
| CN (1) | CN104114561B (https=) |
| BR (1) | BR112014020032B1 (https=) |
| DK (1) | DK2814832T3 (https=) |
| ES (1) | ES2563237T3 (https=) |
| IL (1) | IL233801A (https=) |
| MX (1) | MX361997B (https=) |
| TW (1) | TWI551575B (https=) |
| WO (1) | WO2013120878A1 (https=) |
Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US9732100B2 (en) | 2013-02-12 | 2017-08-15 | Bayer Cropscience Ag | Preparation of alkaline earth metal-complexed metal bisamides from metal monoamides |
| EP3750876A1 (de) * | 2019-06-13 | 2020-12-16 | Evonik Operations GmbH | Verfahren zur herstellung von triacetonamin, 2,2,4,6-tetramethylpiperidin und/oder den salzen des 2,2,4,6-tetramethylpiperidins |
Families Citing this family (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| TWI577685B (zh) * | 2012-02-17 | 2017-04-11 | 拜耳作物科學股份有限公司 | 經鹼土金屬錯合之金屬雙醯胺類 |
Citations (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2008138946A1 (de) | 2007-05-14 | 2008-11-20 | Ludwig-Maximilians-Universität | Bisamid-zinkbasen |
| WO2010092096A1 (de) | 2009-02-13 | 2010-08-19 | Ludwig-Maximilians-Universität München | Herstellung und verwendung von zinkamiden |
Family Cites Families (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN103025789A (zh) | 2010-07-26 | 2013-04-03 | 综研化学株式会社 | 聚噻吩聚合用催化剂以及聚(取代噻吩)的制备方法 |
| WO2012085169A1 (en) | 2010-12-22 | 2012-06-28 | Haag Benjamin | Metallic amidoborates for functionalizing organic compounds |
| US20140066290A1 (en) | 2011-04-27 | 2014-03-06 | Sumitomo Chemical Company, Limited | Cathode catalyst for air secondary battery and air secondary battery |
-
2013
- 2013-02-08 TW TW102105248A patent/TWI551575B/zh active
- 2013-02-13 KR KR1020147022526A patent/KR102014305B1/ko active Active
- 2013-02-13 CN CN201380009649.3A patent/CN104114561B/zh active Active
- 2013-02-13 DK DK13704105.9T patent/DK2814832T3/en active
- 2013-02-13 US US14/378,537 patent/US9079925B2/en active Active
- 2013-02-13 JP JP2014557018A patent/JP6163166B2/ja active Active
- 2013-02-13 ES ES13704105.9T patent/ES2563237T3/es active Active
- 2013-02-13 MX MX2014009729A patent/MX361997B/es active IP Right Grant
- 2013-02-13 EP EP13704105.9A patent/EP2814832B1/en active Active
- 2013-02-13 WO PCT/EP2013/052833 patent/WO2013120878A1/en not_active Ceased
- 2013-02-13 BR BR112014020032A patent/BR112014020032B1/pt active IP Right Grant
-
2014
- 2014-07-24 IL IL233801A patent/IL233801A/en active IP Right Grant
Patent Citations (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2008138946A1 (de) | 2007-05-14 | 2008-11-20 | Ludwig-Maximilians-Universität | Bisamid-zinkbasen |
| WO2010092096A1 (de) | 2009-02-13 | 2010-08-19 | Ludwig-Maximilians-Universität München | Herstellung und verwendung von zinkamiden |
Non-Patent Citations (8)
| Title |
|---|
| BODOR ET AL., JOUR. PHARM. SCI., vol. 63, 1974, pages 1387 |
| DENO ET AL., JACS, vol. 93, 1971, pages 2065 |
| J.ORG. CHEM., vol. 62, no. 16, 1997, pages 5631 |
| JACS, 1973, pages 6400 |
| KOVACIC ET AL., CHEMICAL REVIEWS, vol. 70, no. 6, 1970, pages 639 |
| ORG. LETT., vol. 11, no. 8, 2009, pages 1837 - 1840 |
| TOSHIMASA ET AL., BULL. CHEM. SOC. JAP., vol. 45, 1972, pages 1802 |
| ZAKRZEWSKI ET AL., SYNTHETIC COMMUNICATIONS, vol. 18, no. 16, 17, 1988, pages 2135 |
Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US9732100B2 (en) | 2013-02-12 | 2017-08-15 | Bayer Cropscience Ag | Preparation of alkaline earth metal-complexed metal bisamides from metal monoamides |
| EP3750876A1 (de) * | 2019-06-13 | 2020-12-16 | Evonik Operations GmbH | Verfahren zur herstellung von triacetonamin, 2,2,4,6-tetramethylpiperidin und/oder den salzen des 2,2,4,6-tetramethylpiperidins |
Also Published As
| Publication number | Publication date |
|---|---|
| TW201345878A (zh) | 2013-11-16 |
| BR112014020032B1 (pt) | 2020-02-04 |
| EP2814832A1 (en) | 2014-12-24 |
| DK2814832T3 (en) | 2016-02-22 |
| KR20140127249A (ko) | 2014-11-03 |
| EP2814832B1 (en) | 2016-01-13 |
| JP2015506998A (ja) | 2015-03-05 |
| CN104114561B (zh) | 2016-06-08 |
| MX361997B (es) | 2018-12-19 |
| BR112014020032A8 (pt) | 2017-07-11 |
| MX2014009729A (es) | 2014-11-13 |
| BR112014020032A2 (https=) | 2017-06-20 |
| US9079925B2 (en) | 2015-07-14 |
| IL233801A0 (en) | 2014-09-30 |
| US20150031886A1 (en) | 2015-01-29 |
| JP6163166B2 (ja) | 2017-07-12 |
| ES2563237T3 (es) | 2016-03-11 |
| CN104114561A (zh) | 2014-10-22 |
| IL233801A (en) | 2017-08-31 |
| TWI551575B (zh) | 2016-10-01 |
| KR102014305B1 (ko) | 2019-08-26 |
Similar Documents
| Publication | Publication Date | Title |
|---|---|---|
| EP2814832B1 (en) | Alkaline earth metal-complexed metal amides | |
| EP2814811B1 (en) | Alkaline earth metal-complexed metal bisamides | |
| US9732100B2 (en) | Preparation of alkaline earth metal-complexed metal bisamides from metal monoamides |
Legal Events
| Date | Code | Title | Description |
|---|---|---|---|
| 121 | Ep: the epo has been informed by wipo that ep was designated in this application |
Ref document number: 13704105 Country of ref document: EP Kind code of ref document: A1 |
|
| WWE | Wipo information: entry into national phase |
Ref document number: 2013704105 Country of ref document: EP |
|
| WWE | Wipo information: entry into national phase |
Ref document number: 233801 Country of ref document: IL |
|
| ENP | Entry into the national phase |
Ref document number: 20147022526 Country of ref document: KR Kind code of ref document: A |
|
| WWE | Wipo information: entry into national phase |
Ref document number: 14378537 Country of ref document: US Ref document number: MX/A/2014/009729 Country of ref document: MX |
|
| ENP | Entry into the national phase |
Ref document number: 2014557018 Country of ref document: JP Kind code of ref document: A |
|
| NENP | Non-entry into the national phase |
Ref country code: DE |
|
| REG | Reference to national code |
Ref country code: BR Ref legal event code: B01A Ref document number: 112014020032 Country of ref document: BR |
|
| ENP | Entry into the national phase |
Ref document number: 112014020032 Country of ref document: BR Kind code of ref document: A2 Effective date: 20140813 |