Claims
- 1. A process for the hydrogenation of an imine comprising:a). forming, with or without an inert solvent, a reaction mixture of 1) an imine, 2) an iridium catalyst 3) an acid, and 4) an ammonium chloride, bromide or iodide, or a metal chloride, bromide or iodide that is soluble in the reaction mixture, b) reacting the mixture with hydrogen under elevated pressure.
- 2. A process according to claim 1, wherein the imine contains at least one
- 3. A process according to claim 1, wherein the imine contains at least one of the groups and additionally unsaturated groups
- 4. A process according to claim 3, wherein the free bonds are saturated with hydrogen or organic radicals having from 1 to 22 carbon atoms or organic hetero radicals having from 1 to 20 carbon atoms, and at least one hetero atom from the group O, S, N and P; or thenitrogen atom of the group is saturated with NH2 or a primary amino group having from 1 to 22 carbon atoms or a secondary amino group having from 2 to 40 carbon atoms.
- 5. A process according to claim 1, wherein an aldimine, ketimine or hydrazone is hydrogenated.
- 6. A process according to claim 5, wherein the imine is an imine of formula I which is hydrogenated to form an amine of formula II whereinR3 is linear or branched C1-C12alkyl, cycloalkyl having from 3 to 8 ring carbon atoms; heterocycloalkyl bonded via a carbon atom and having from 3 to 8 ring atoms and 1 or 2 hetero atoms from the group O, S and NR6; a C7-C16aralkyl bonded via an alkyl carbon atom, or C1-C12alkyl substituted by the mentioned cycloalkyl or heterocycloalkyl or heteroaryl; or wherein R3 is C6-C12aryl, or C4-C11heteroaryl bonded via a ring carbon atom and having 1 or 2 hetero atoms in the ring; R3 being unsubstituted or substituted by —CN, —NO2, F, Cl, C1-C12alkyl, C1-C12alkoxy, C1-C12alkylthio, C1-C6haloalkyl, —OH, C6-C12-aryl or -aryloxy or -arylthio, C7-C16-aralkyl or -aralkoxy or -aralkylthio, secondary amino having from 2 to 24 carbon atoms, —CONR4R5 or by —COOR4, and the aryl radicals and the aryl groups in the aralkyl, aralkoxy and aralkylthio in turn being unsubstituted or substituted by —CN, —NO2, F, Cl, C1-C4-alkyl, -alkoxy or -alkylthio, —OH, —CONR4R5 or by —COOR4; R4 and R5 are each independently of the other hydrogen, C1-C12alkyl, phenyl or benzyl, or R4 and R5 together are tetra- or penta-methylene or 3-oxapentylene; R6 has independently the same meaning as given for R4; R1 and R2 are each independently of the other a hydrogen atom, C1-C12alkyl or cycloalkyl having from 3 to 8 ring carbon atoms, each of which is unsubstituted or substituted by —OH, C1-C12alkoxy, phenoxy, benzyloxy, secondary amino having from 2 to 24 carbon atoms, —CONR4R5 or by —COOR4; C6-C12aryl or C7-C16aralkyl that is unsubstituted or substituted as R3, or —CONR4R5 or —COOR4, wherein R4 and R5 are as defined hereinbefore; or R3 is as defined hereinbefore and R1 and R2 together are alkylene having from 2 to 5 carbon atoms that is optionally interrupted by 1 or 2 —O—, —S— or —NR6— radicals, and/or unsubstituted or substituted by ═O or as R1 and R2 above in the meaning of alkyl, and/or condensed with benzene, pyridine, pyrimidine, furan, thiophene or pyrrole; or R2 is as defined hereinbefore and R1 and R3 together are alkylene having from 2 to 5 carbon atoms that is optionally interrupted by 1 or 2 —O—, —S— or —NR6— radicals, and/or unsubstituted or substituted by ═O or as R1 and R2 above in the meaning of alkyl, and/or condensed with benzene, pyridine, pyrimidine, furan, thiophene or pyrrole.
- 7. A process according to claim 5, wherein R1 and R2 as heteroaryl form a 5- or 6-membered ring having 1 or 2 identical or different hetero atoms.
- 8. A process according to claim 5, wherein R1 and R2 as heteroaryl-substituted alkyl are derived from a 5- or 6-membered ring having 1 or 2 identical or different hetero atoms.
- 9. A process according to claim 5, wherein R1 and R2 as heterocycloalkyl or as hetero-cycloalkyl-substituted alkyl contain from 4 to 6 ring atoms and 1 or 2 identical or different hetero atoms from the group O, S and NR6, wherein R6 is hydrogen, C1-C12alkyl, phenyl or benzyl.
- 10. A process according to claim 5, wherein R1, R2 and R3 as alkyl are unsubstituted or substituted C1-C6alkyl.
- 11. A process according to claim 5, wherein R1, R2 and R3 as unsubstituted or substituted cycloalkyl contain from 3 to 6 ring carbon atoms.
- 12. A process according to claim 5, wherein R1, R2 and R3 as aryl are unsubstituted or substituted naphthyl or phenyl, and R1, R2 and R3 as aralkyl are unsubstituted or substituted phenylalkyl having from 1 to 10 carbon atoms in the alkylene.
- 13. A process according to claim 5, wherein R1 and R2 together or R1 and R3 together form, with the carbon atom or the —N═C group to which they are bonded, respectively, a 5- or 6-membered ring.
- 14. A process according to claim 5, wherein formula I R3 is 2,6-di-C1-C4alkylphen-1-yl, R1 is C1-C4alkyl, and R2 is C1-C4alkyl, C1-C4alkoxymethyl or C1-C4alkoxyethyl.
- 15. A process according to claim 14, wherein R3 is 2,6-dimethylphen-1-yl or 2-methyl-6-ethylphen-1-yl, R1 is ethyl or methyl, and R2 is methoxymethyl.
- 16. A process according to claim 6, wherein the imine corresponds to the formula
- 17. A process according to claim 1, wherein the iridium catalyst is a homogeneous catalyst that is substantially soluble in the reaction medium.
- 18. A process according to claim 1, wherein the catalyst corresponds to the formula III, IIIa, IIIb, IIIc or IIId[XirYZ] (III), [XirY]+A− (IIIa), [YIrZ4]−M+ (IIIb), [YIrHZ2]2 (IIIc), [YIrZ3]2 (IIId), wherein X is two olefin ligands or a diene ligand, Y is a diphosphine having secondary phosphine groups(a) the phosphine groups of which are bonded to different carbon atoms of a carbon chain having from 2 to 4 carbon atoms, or (b) the phosphine groups of which are either bonded directly or via a bridge group —CRaRb— in the ortho positions of a cyclopentadienyl ring or are each bonded to a cyclopentadienyl ring of a ferrocenyl, or (c) one phosphine group of which is bonded to a carbon chain having 2 or 3 carbon atoms and the other phosphine group of which is bonded to an oxygen atom or a nitrogen atom bonded terminally to that carbon chain, or (d) the phosphine groups of which are bonded to the two oxygen atoms or nitrogen atoms bonded terminally to a C2-carbon chain; with the result that in the cases of (a), (b), (c) and (d) a 5-, 6- or 7-membered ring is formed together with the Ir atom, the radicals Z are each independently of the other(s) Cl, Br or I, A− is the anion of an oxy or complex acid, and M+ is an a metal cation or quaternary ammonium, and Ra and Rb are each independently of the other hydrogen, C1-C8alkyl, C1-C4fluoroalkyl, phenyl or benzyl or are phenyl or benzyl having from 1 to 3 C1-C4alkyl or C1-C4alkoxy substituents.
- 19. A process according to claim 18, wherein the diphosphine Y contains at least one chiral carbon atom.
- 20. A process according to claim 18, wherein X as an olefin ligand is branched or linear C2-C12alkylene; and X as a diene ligand is an open-chain or cyclic diene having from 4 to 12 carbon atoms.
- 21. A process according to claim 18, wherein the secondary phosphine groups contain two identical or different radicals from the following group: linear or branched C1-C12alkyl; unsubstituted or C1-C6alkyl-orC1-C6alkoxy-substituted C5-C12cycloalkyl, C5-C12cycloalkyl-CH2—, phenyl or benzyl; or phenyl or benzyl substituted by halogen (e.g. F, Cl or Br), C1-C6haloalkyl, (C1-C12alkyl)3Si, (C6H5)3Si, C1-C6haloalkoxy (e.g. trifluoromethoxy), —NH2, phenyl2N—, benzyl2N—, morpholinyl, piperidinyl, pyrrolidinyl, (C1-C12alkyl)2N—, -ammonium-X1—, —SO3M1, —CO2M1, —PO3M1 or by —COO—C1-C6alkyl (e.g. —COOCH3), wherein M1 is an alkali metal or hydrogen and X1− is the anion of a monobasic acid.
- 22. A process according to claim 18, wherein the diphosphine Y is of the formula: whereinR15 and R16 are each independently of the other hydrogen, C1-C4alkyl, phenyl, benzyl, or phenyl or benzyl having from 1 to 3 C1-C4alkyl or C1-C4alkoxy substituents, R14 is hydrogen, C1-C4alkyl, phenyl, benzyl, or phenyl or benzyl having from 1 to 3 C1-C4alkyl or C1-C4alkoxy substituents, R17 is hydrogen, C1-C4alkyl, phenyl, benzyl C1-C6alkoxy-CO—, C1-C6alkyl-CO—, Phenyl-CO—, naphthyl-CO— or C1-C4alkylNH—CO—, A may be identical or different groups —PR2, wherein R is C1-C6alkyl, cyclohexyl, phenyl, benzyl, or phenyl or benzyl having from 1 to 3 C1-C4alkyl, C1-C4alkoxy, —CF3 or partially or fully fluorinated C2-C4alkoxy substituents, and N is 0, 1 or 2.
- 23. A process according to claim 18, wherein the diphosphine Y is{(R)-1-[(S)-2-diphenylphosphino)ferrocenyl]}ethyl-di(3,5-dimethyl-phenyl)phosphine {(R)-1-[(S)-2-diphenylphosphino)ferrocenyl]}ethyl-di(3,5-dimethyl-4-N,N-dipropyl-aminophenyl)phosphine {(R)-1-[(S)-2-diphenylphosphino)ferrocenyl]}ethyl-di(3,5-diisopropyl-4-N,N-dimethylaminophenyl)phosphine {(R)-1-[(S)-2-diphenylphosphino)ferrocenyl]}ethyl-di(3,5-dimethyl-4-N,N-dibenzylylaminophenyl)phosphine {[(R)-1-[(S)-2-diphenylphosphino)ferrocenyl]}ethyl-di(3,5-dimethyl-4-N,N-dibenzylylaminophenyl)phosphine {(R)-1-[(S)-2-diphenylphosphino)ferrocenyl]}ethyl-di(3,5-dimethyl-4-(1′-pyrrolo)-phenyl)phosphine {[(R)-1-[(S)-2-diphenylphosphino)ferrocenyl]}ethyl-di(3,5-dimethyl-4-N,N-dipentyl-aminophenyl)phosphine {[(R)-1-[(S)-2-diphenylphosphino)ferrocenyl]}ethyl-di(3,5-dimethylaminophenyl)phosphine 1,4-bix(diphenylphosphino)butane or {[(R)-1-[(S)-2-di(4-methoxyphenyl)phosphino)ferrocenyl]}ethyl-di(3,5-dimethyl-4-N,N-dimethylaminophenyl)phosphine.
- 24. A process according to claim 1, wherein the ammonium chloride, bromide or iodide, or the emtal chloride, bromide or iodide that is soluble in the reaction mixture, is used in an amount of from 0.01 to 200 mol %, based on the iridium catalyst.
- 25. A process according to claim 1, wherein the metal chloride, bromide or iodide used is an alkali metal chloride, bromide or iodide.
- 26. A process according to claim 1, wherein the ammonium or alkali metal chloride, bromide or iodide is a tetraalkylammonium chloride, bromide or iodide having from 1 to 6 carbon atoms in the alkyl groups or in the case of an alkali metal chloride, bromide or iodide is a sodium, lithium or potassium chloride, bromide or iodide.
- 27. A process according to claim 1, wherein the acid is an inorganic or organic acid.
- 28. A process according to claim 1, wherein the acid is used in an amount of from 0.001 to 50% by weight, preferably 0.1 to 50% by weight, based on the imine.
- 29. A process according to claim 27, wherein the organic acid is an aliphatic or aromatic carboxylic acid, sulfonic acid or phosphorus (V) acid.
- 30. A process according to claim 27, wherein the organic acid is acetic acid, propionic acid, trifluoroacetic acid, chloroacetic acid or methanesulfonic acid, and the inorganic acid is H2SO4.
- 31. A process according to claim 1, wherein the molar ratio of the imine to the iridium catalyst is from 500 000 to 20.
- 32. A process according to claim 1, wherein the reaction temperature is from −20 to 100° C.
- 33. A process according to claim 1, wherein the hydrogen pressure is from 5 to 150 bar.
- 34. A process according to claim 2, wherein the hydrogenation is carried out in a loop reactor.
- 35. A process according to claim 1, wherein an aldimine or a ketimine formed in situ before or during the hydrogenation is hydrogenated.
- 36. A process for the preparation of a compound of the formula wherein R01, R02 and R03 are each independently of the other C1-C4alkyl, and R04 is C1-C4alkyl or C1-C4alkoxymethyl or C1-C4alkoxyethyl, comprising:a). forming, with or without an inert solvent, a reaction mixture of 1) an imine of the formula 2) an iridium catalyst, 3) an acid, and 4) an ammonium chloride, bromide or iodide, or a metal chloride, bromide or iodide that is soluble in the reaction mixture;b). reacting the mixture with hydrogen under elevated pressure to form an amine of the formula and(c). reaction thereof with the compound of formula ClCH2CO—Cl (VII).
- 37. A process according to claim 36, wherein the imine used is a compound of the formula
Priority Claims (1)
Number |
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309/94 |
Feb 1994 |
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Parent Case Info
This application is a continuation of application Ser. No. 08/532,779, filed Sep. 29, 1995 now abandoned; which is a 371 of PCT/EP95/00221, filed Jan. 21, 1995.
US Referenced Citations (11)
Foreign Referenced Citations (3)
Number |
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0115470 |
Aug 1984 |
EP |
0564406 |
Oct 1993 |
EP |
WOA9215400 |
Sep 1992 |
WO |
Non-Patent Literature Citations (3)
Entry |
Chao et.al., Tetrahedron Asymmetry, vol. 3, No. 3, pp 337-340, 1992.* |
Henri B. Kagar, Chiral Ligands for Asymmetric Catalysis, vol. 5, pp 13-23, (1985). |
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Continuations (1)
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08/532779 |
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08/926835 |
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