Claims
- 1. A process for producing a substituted aromatic compound, which comprises:
(a) reacting an aromatic compound selected from the group consisting of an aryl, a six membered heteroaromatic compound, and a five membered heteroaromatic compound with a borane selected from the group consisting of a borane with a B—H, B—B, and B—Si bond in the presence of a catalytically effective amount of an iridium or rhodium complex with three or more substituents, and an organic ligand selected from the group consisting of phosphorus, carbon, nitrogen, oxygen, and sulfur organic ligands to form an aromatic boron compound; and (b) reacting the aromatic boron compound with an organic compound selected from the group consisting of halide, triflate, and nonaflate in the presence of a catalytically effective amount of a metal catalyst wherein the aromatic group of the organic compound is coupled to the aromatic group of the aromatic boron compound to produce the substituted aromatic compound.
- 2. The process of claim 1 wherein the three or more substituents excludes hydrogen.
- 3. The process of claim 1 wherein the iridium complex is selected from the group consisting of (Cp*)Ir(H)2(Me3P), (Cp*)Ir(H)(BPin)(Me3P), (Cp*)Ir(H)(C6H5)(Me3P), (Ind)Ir(COD), (Ind)Ir(dppe), (MesH)Ir(BPin)(B(OR)2)2, ((R1)3P)3Ir(B(OR2)2)3, (R1)2P)2Ir(BPin)3, (((R1)2P)3Ir((R2O)2B)3)2, ((R1)3P)4Ir(BPin), ((R1)3P)2Ir(BPin)3, (MesH)Ir(BPin)3, and (IrCl(COD))2, (PMe3)2IrH5, ((R1)3P)2IrH5, and ((R)3P)2IrHx(B(OR2)2)5−x where x is 0-4, wherein Cp* is 1,2,3,4,5-methylcyclopentadienyl, BPin is pinacolborane, Me is methyl, H is hydrogen, P is phosphorus, Ind is indenyl, COD is 1,5-cyclooctadiene, MesH is mesitylene, and wherein R, R1, and R2 are hydrogen, linear or branched alkyl containing 1 to 8 carbons, aryl, or a carbon in a cyclic structure.
- 4. The process of claim 1 wherein the iridium complex is (Ind)Ir(COD) wherein Ind is indenyl and COD is 1,5-cyclooctadiene.
- 5. The process of claim 1 wherein the iridium complex is (MesH)Ir(BPin)3 wherein MesH is mesitylene and BPin is pinacolborane.
- 6. The process of claim 1 wherein the iridium complex is (IrCl(COD))2 wherein COD is 1,5-cyclooctadiene.
- 7. The process of claim 1 wherein the rhodium complex is selected from the group consisting of (Cp*)Rh(H)2(Me3P), (Cp*)Rh(H)(BPin)(Me3P), (Cp*)Rh(H)(C6H5)(Me3P), and (Cp*)Rh(hexamethylbenzene), wherein Cp* is 1,2,3,4,5-methylcyclopentadienyl, BPin is pinacolborane, Me is methyl, H is hydrogen, and P is phosphorus.
- 8. The process of claim 1 or 2 wherein the phosphorus organic ligand is selected from the group consisting of trimethyl phosphine (PMe3), 1,2-bis(dimethylphosphino)ethane (dmpe), Ph3P, Cy3P, and 1,2-bis(diphenylphosphino)ethane (dppe).
- 9. The process of claim 1 wherein the borane is a borane ester.
- 10. The process of claim 1 wherein the borane is pinacolborane.
- 11. The process of claim 1 wherein the metal is palladium.
- 12. The process of claim 1 wherein the metal catalyst complex is selected from Pd(PPh3)4, Pd2(dba)3/P(tBu)3, PdCl2(dppf), and Pd(OAc)2/Cy3P wherein P is phosphorus and Ph is phenyl, dba is phenyl, dba is dibenzylideneacetone, tBu is tert-butyl, dppf is diphenylphosphinoferrocene.
- 13. A process for producing an organic substituted aryl or heteroaryl compound, which comprises:
(a) reacting in a reaction vessel a first aromatic compound selected from the group consisting of an aryl, a six membered heteroaromatic compound, and a five membered heteroaromatic compound with a borane selected from the group consisting of a borane with a B—H, B—B, and B—Si bond in the presence of a catalytically effective amount of an iridium or rhodium complex with three or more substituents, and an organic ligand selected from the group consisting of phosphorus, carbon, nitrogen, oxygen, and sulfur organic ligands to form an aromatic boron compound; and (b) reacting the aromatic boron compound formed in the reaction vessel with an organic compound selected from the group consisting of halide, triflate, and nonaflate in the presence of a catalytically effective amount of a metal catalyst wherein the aromatic group of the organic compound is coupled to the aromatic group of the aromatic boron compound to produce the organic substituted aryl or heteroaryl compound.
- 14. The process of claim 13 wherein the three or more substituents excludes hydrogen.
- 15. The process of claim 13 wherein the iridium complex is selected from the group consisting of (Cp*)Ir(H)2(Me3P), (Cp*)Ir(H)(BPin)(Me3P), (Cp*)Ir(H)(C6H5)(Me3P), (Ind)Ir(COD), (Ind)Ir(dppe), (MesH)Ir(BPin)(B(OR)2), ((R1)3P)3Ir(B(OR2)2)3, (R1)3P)2Ir(BPin)3, (((R1)3P)3Ir((R2O)2B)3)2, ((R1)3P)4Ir(BPin), ((R1)2P)3Ir(BPin)3, (MesH)Ir(BPin)3, (PMe3)2IrH5, ((R1)3P)2IrH5, and ((R1)3P)2IrHx(B(OR2)2)5−x, where x is 0-4, (IrCl(COD))2, wherein Cp* is 1,2,3,4,5-methylcyclopentadienyl, BPin is pinacolborane, Me is methyl, H is hydrogen, P is phosphorus, Ind is indenyl, COD is 1,5-cyclooctadiene, MesH is mesitylene, and wherein R, R1, and R2 are hydrogen, linear or branched alkyl containing 1 to 8 carbons, aryl, or a carbon in a cyclic structure.
- 16. The process of claim 13 wherein the iridium complex is (Ind)Ir(COD) wherein Ind is indenyl and COD is 1,5-cyclooctadiene.
- 17. The process of claim 13 wherein the iridium complex is (MesH)Ir(BPin)3 wherein MesH is mesitylene and BPin is pinacolborane.
- 18. The process of claim 13 wherein the iridium complex is (IrCl(COD))2 wherein —COD is 1,5-cyclooctadiene.
- 19. The process of claim 13 wherein the rhodium complex is selected from the group consisting of (Cp*)Rh(H)2(Me3P), (Cp*)Rh(H)(BPin)(Me3P), (Cp*)Rh(H)(C6H5)(Me3P), and (Cp*)Rh(hexamethylbezene), wherein Cp* is 1,2,3,4,5-methylcyclopentadienyl, BPin is pinacolborane, Me is methyl, H is hydrogen, and P is phosphorus.
- 20. The process of claim 13 wherein the phosphorus organic ligand is selected from the group consisting of trimethyl phosphine (PMe3), 1,2-bis(dimethylphosphino)ethane (dmpe), Ph3P, Cy3P, and 1,2-bis(diphenylphosphino)ethane (dppe).
- 21. The process of claim 13 wherein the borane is a borane ester.
- 22. The process of claim 13 wherein the borane is pinacolborane.
- 23. The process of claim 13 wherein the metal is palladium.
- 24. The process of claim 13 wherein the metal catalyst complex is selected from Pd(PPh3)4, Pd2(dba)3/P(tBu)3, PdCl2(dppf), and Pd(OAc)2/PCy3 wherein P is phosphorus and Ph is phenyl, dba is phenyl, dba is dibenzylideneacetone, tBu is tert-butyl, dppf is diphenylphosphinoferrocene.
- 25. A process for producing a polyphenylene, which comprises:
(a) reacting a mixture of aromatic compounds with one to five halogen groups and a borane in the presence of a catalytically effective amount of an iridium or rhodium complex with three or more substituents, and a phosphorus, carbon, nitrogen, oxygen, or sulfur organic ligand to form a mixture of borylated aromatic compounds; and (b) reacting the mixture of borylated aromatic compounds in the presence of a catalytically effective amount of a metal catalyst wherein the borylated aromatic compounds in the mixture are cross-coupled to produce the polyphenylene.
- 26. The process of claim 25 wherein the three or more substituents excludes hydrogen.
- 27. The process of claim 25 wherein the iridium complex is selected from the group consisting of (Cp*)Ir(H)2(Me3P), (Cp*)Ir(H)(BPin)(Me3P), (CP*)Ir(H) (C6H5)(Me3P), (Ind)Ir(COD), (Ind)Ir(dppe), (MesH)Ir(BPin)(B(OR)2), ((R1)3P)3Ir(B(OR2)2)3, (R1)2P)2Ir(BPin)3, (((R1)2P)3Ir((R2O)2B)3)2, ((R1)3P)4Ir(BPin), ((R1)2P)2Ir(BPin)3, (MesH)Ir(BPin)3, (IrCl(COD))2, (PMe3)2IrH5, ((R1)3P)2IrH5, ((R1)3P)2IrHx(B(OR2)2)5−x, where x is 0-4, wherein CP* is 1,2,3,4,5-methylcyclopentadienyl, BPin is pinacolborane, Me is methyl, H is hydrogen, P is phosphorus, Ind is indenyl, COD is 1,5-cyclooctadiene, MesH is mesitylene, and wherein R, R1, and R2 are hydrogen, linear or branched alkyl containing 1 to 8 carbons, aryl, or a carbon in a cyclic structure.
- 28. The process of claim 25 wherein the iridium complex is (Ind)Ir(COD) wherein Ind is indenyl and COD is 1,5-cyclooctadiene.
- 29. The process of claim 25 wherein the iridium complex is (MesH)Ir(BPin)3 wherein MesH is mesitylene and BPin is pinacolborane.
- 30. The process of claim 25 wherein the iridium complex is (IrCl(COD))2 wherein COD is 1,5-cyclooctadiene.
- 31. The process of claim 25 wherein the rhodium complex is selected from the group consisting of (Cp*)Rh(H)2(Me3P), (Cp*) Rh(H)(BPin)(Me3P), (CP*)Rh(H)(C6H5)(Me3P), and (Cp*)Rh(hexamethylbenzene), wherein CP* is 1,2,3,4,5-methylcyclopentadienyl, BPin is pinacolborane, Me is methyl, H is hydrogen, and P is phosphorus.
- 32. The process of claim 25 wherein the phosphorus organic ligand is selected from the group consisting of trimethyl phosphine (PMe3), 1,2-bis(dimethylphosphino)ethane (dmpe), Ph3P, Cy3P, and 1,2-bis(diphenylphosphino)ethane (dppe).
- 33. The process of claim 25 wherein the borane is a borane ester.
- 34. The process of claim 25 wherein the borane is pinacolborane.
- 36. The process of claim 25 wherein the metal is palladium.
- 37. The process of claim 25 wherein the metal catalyst complex is selected from Pd(PPh3)4, Pd2(dba)3/P(tBu)3, PdCl2(dppf), and Pd(OAc)2/Cy3P wherein P is phosphorus and Ph is phenyl, dba is dibenzylideneacetone, tBu is tert-butyl, dppf is diphenylphosphinoferrocene.
- 38. A process for producing a polyphenylene, which comprises:
(a) reacting a mixture of aromatic compounds and a borane in the presence of a catalytically effective amount of an iridium or rhodium complex with three or more substituents, and a phosphorus, carbon, nitrogen, oxygen, or sulfur organic ligand to form a mixture of borylated aromatic compounds; and (b) reacting the mixture of borylated aromatic compounds with a mixture of halogenated aromatic compounds with at least two halogen groups in the presence of a catalytically effective amount of a metal catalyst wherein the borylated aromatic compounds in the mixture are cross-coupled to the halogenated aromatic compounds to produce the polyphenylene.
- 39. The process of claim 38 wherein the three or more substituents excludes hydrogen.
- 40. The process of claim 38 wherein the iridium complex is selected from the group consisting of (Cp*)Ir(H)2(Me3P), (Cp*)Ir(H)(BPin)(Me3P), (CP*)Ir(H)(C6H5)(Me3P), (Ind)Ir(COD), (Ind)Ir(dppe), (MesH)Ir(BPin)(B(OR)2), ((R1)3P)3Ir(B(OR2)2)3, (R1)2P)2Ir (BPin)3, (((R1)2P)3Ir((R2O)2B)3)2, ((R1)3P)4Ir(BPin), ((R1)2P)2Ir(BPin)3, (MesH)Ir(BPin)3, (IrCl(COD))2, (PMe3)2IrH5, ((R1)3P)2IrH5, ((R1)3P)2IrHx(B(OR2)2)5−x, where x is 0-4, wherein CP* is 1,2,3,4,5-methylcyclopentadienyl, BPin is pinacolborane, Me is methyl, H is hydrogen, P is phosphorus, Ind is indenyl, COD is 1,5-cyclooctadiene, MesH is mesitylene, and wherein R, R1, and R2 are hydrogen, linear or branched alkyl containing 1 to 8 carbons, aryl, or a carbon in a cyclic structure.
- 41. The process of claim 38 wherein the iridium complex is (Ind)Ir(COD) wherein Ind is indenyl and COD is 1,5-cyclooctadiene.
- 42. The process of claim 38 wherein the iridium complex is (MesH)Ir(BPin)3 wherein MesH is mesitylene and BPin is pinacolborane.
- 43. The process of claim 38 wherein the iridium complex is (IrCl(COD))2 wherein COD is 1,5-cyclooctadiene.
- 44. The process of claim 38 wherein the rhodium complex is selected from the group consisting of (Cp*)Rh(H)2(Me3P), (Cp*)Rh(H)(BPin)(Me3P), (CP*)Rh(H)(C6H5)(Me3P), and (Cp*)Rh(hexamethylbenzene), wherein CP* is 1,2,3,4,5-methylcyclopentadienyl, BPin is pinacolborane, Me is methyl, H is hydrogen, and P is phosphorus.
- 45. The process of claim 38 wherein the phosphorus organic ligand is selected from the group consisting of trimethyl phosphine (PMe3), 1,2-bis(dimethylphosphino)ethane (dmpe), Ph3P, and 1,2-bis(diphenylphosphino)ethane (dppe).
- 46. The process of claim 38 wherein the borane is a borane ester.
- 47. The process of claim 38 wherein the borane is pinacolborane.
- 48. The process of claim 38 wherein the metal is palladium.
- 49. The process of claim 38 wherein the metal catalyst complex is selected from Pd(PPh3)4, Pd2(dba)3/P(tBu)3, PdCl2(dppf), wherein P is phosphorus and Ph is phenyl, dba is dibenzylideneacetone, tBu is tert-butyl, dppf is diphenylphosphinoferrocene.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application claims priority to Provisional Application No. 60/305,107, filed Jul. 13, 2001, and to Provisional Application No. 60/332,092, filed Nov. 21, 2001.
STATEMENT REGARDING FEDERALLY SPONSORED RESEARCH OR DEVELOPMENT
[0002] This invention was supported in part by National Institutes of Health, National Institute of General Medical Sciences Grant No. R01 GM63188-01 and in part by National Science Foundation Grant No. CHE-9817230. The U.S. government has certain rights in this invention.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60305107 |
Jul 2001 |
US |
|
60332092 |
Nov 2001 |
US |