Claims
- 1. A ligand selected from the group consisting of compounds represented by A through K:
- 2. The ligand of claim 1, wherein said heterocyclic compound is selected from the group consisting of: a nitrogen heterocycle, a sulfur heterocycle and an oxygen heterocycle.
- 3. The ligand of claim 1, wherein said ligand is one of the enantiomers.
- 4. The ligand of claim 1, wherein said ligand is a racemic mixture of enantiomers.
- 5. The ligand of claim 1, wherein said ligand is a non-racemic mixture of enantiomers.
- 6. The ligand of claim 1, having an optical purity of at least 85% ee.
- 7. The ligand of claim 1, having an optical purity of at least 95% ee.
- 8. The ligand of claim 1, wherein said ligand is selected from the group consisting of:
- 9. The ligand of claim 1, wherein said ligand is a chiral f-binaphane.
- 10. The ligand of claim 9, wherein said ligand is (R,R)-f-binaphane represented by the formula:
- 11. A catalyst prepared by a process comprising: contacting a transition metal salt, or a complex thereof, and a ligand selected from the group consisting of compounds represented by A through K:
- 12. The catalyst of claim 11, wherein said catalyst is one of the enantiomers.
- 13. The catalyst of claim 11, wherein said catalyst is a racemic mixture of enantiomers.
- 14. The catalyst of claim 11, wherein said catalyst is a non-racemic mixture of enantiomers.
- 15. The catalyst of claim 11, having an optical purity of at least 95% ee.
- 16. The catalyst of claim 11, wherein said transition metal is selected from the group consisting of: Pt, Pd, Rh, Ru, Ir, Cu, Ni, Mo, Ti, V, Re and Mn.
- 17. The catalyst of claim 16, wherein said transition metal salt, or complex thereof, is selected from the group consisting of: PtCl2; Pd2(DBA)3; Pd(OAc)2; PdCl2(RCN)2; [Pd(allyl)Cl]2; [Rh(COD)Cl]2; [Rh(COD)2]X; Rh(acac) (CO)2; Rh(ethylene)2(acac); Rh(CO)2Cl2; Ru(RCOO)2(diphosphine); Ru(methylallyl)2(diphosphine); Ru(aryl group)X2(diphosphine); RuCl2(COD); [Rh(COD)2]X; RuX2(diphosphine); RuCl2(═CHR)(PR′3)2; Ru(ArH)Cl2; Ru(COD)(methylallyl)2; [Ir(COD)2Cl]2; [Ir(COD)2]X; Cu(OTf); Cu(OTf)2; Cu(Ar)X; CuX; NiX2; Ni(COD)2; MoO2(acac)2; Ti(OiPr)4; VO(acac)2; MeReO3; MnX2 and Mn(acac)2; wherein each R and R′ is independently selected from the group consisting of: alkyl or aryl; Ar is an aryl group; and X is a counteranion.
- 18. The catalyst of claim 11, wherein said counteranion X is selected from the group consisting of: halogen, BF4, ClO4, SbF6, CF3SO3 and a mixture thereof.
- 19. The catalyst of claim 11, wherein said ligand is chiral f-binaphane and said transition metal is Ir.
- 20. The catalyst of claim 11, prepared in situ or as an isolated compound.
- 21. A process for preparation of an asymmetric compound comprising:
contacting a substrate capable of forming an asymmetric product by an asymmetric reaction and a catalyst prepared by a process comprising: contacting a transition metal salt, or a complex thereof, and a ligand selected from the group consisting of compounds represented by A through K: 5253wherein the bridge group is selected from the group consisting of: (CH2)n wherein n is an integer ranging from 1 to 8, (CH2)nW(CH2)m wherein n and m are independently an integer ranging from 1 to 8 and W, wherein W is a divalent group selected from the group consisting of: 1,2-divalent phenyl, 2,2′-divalent 1,1′-biphenyl, 2,2′-divalent-1,1′-binaphthyl, ferrocene, and a substituted derivative thereof; wherein each substituent in said substituted derivative is selected from the group consisting of: aryl, alkyl having 1-8 carbon atoms, F, Cl, Br, I, COOR, SO3R, PR3R2, OR, SR, PR2, AsR2, SbR2, aryloxyl, nitro, NR2, vinyl, substituted vinyl and a combination thereof, wherein each R is independently selected from the group consisting of: hydrogen, alkyl, aryl, alkaryl and aralkyl; wherein each X is independently selected from the group consisting of: hydrogen, halide, alkyl, aryl, alkoxy, silane, carboxylate and amide; each Y is independently selected from the group consisting of: hydrogen, alkyl, aryl, alkoxy, carboxylate and amide; and each Z is independently selected from the group consisting of: hydrogen, alkyl, aryl, alkoxy, amide, carboxylate, and a heterocyclic compound.
- 22. The process of claim 21, wherein said asymmetric reaction is selected from the group consisting of: hydrogenation, hydride transfer, hydrosilylation, hydroboration, hydrovinylation, hydroformylation, allylic alkylation, cyclopropanation, Diels-Alder reaction, Heck reaction, isomerization, Aldol reaction, Michael addition and epoxidation.
- 23. The process of claim 21, wherein said asymmetric reaction is hydrogenation; and said substrate is selected from the group consisting of: ethylenically unsaturated compound, imine, ketone, enamine, enamide and vinyl ester.
- 24. The process of claim 21, wherein said catalyst is an Ir complex of chiral f-binaphane and said asymmetric reaction is hydrogenation of imines to produce a chiral amine.
- 25. A process for preparing a chiral f-binaphane or a substituted derivative thereof, comprising:
contacting chiral 1,1′-di(chloromethyl)binaphthyl or a substituted derivative thereof and 1,1′-bisphosphinoferrocene or a substituted derivative thereof in the presence of a base and a solvent to produce f-binaphane or a substituted derivative thereof.
- 26. The process of claim 25, wherein said base is NaH.
- 27. The process of claim 25, wherein said solvent is tetrahydrofuran is (THF).
Parent Case Info
[0001] This application claims priority from Provisional Applications Serial No. 60/150,375 filed on Aug. 23, 1999 and No. 60/165,649 filed on Nov. 15, 1999.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60150375 |
Aug 1999 |
US |
|
60165649 |
Nov 1999 |
US |
Divisions (1)
|
Number |
Date |
Country |
Parent |
09643434 |
Aug 2000 |
US |
Child |
10319093 |
Dec 2002 |
US |