Claims
- 1. A process for producing a diaryl amine compound of the formula (I):
- 2. The process according to claim 1, further comprising the step of removing group Y from the coupled amine to produce the compound of formula (I).
- 3. The process according to claim 1, wherein the process is performed using a transition metal catalyst.
- 4. The process according to claim 3, wherein the transition metal catalyst comprises palladium.
- 5. The process according to claim 4 wherein the catalyst is PdLn, wherein
each L is independently selected from —OAc, —O-tolyl, halogen, PPh3, dppe, dppf, dba, and BINAP; and n is an integer from 0-4.
- 6. The process according to claim 3, wherein the step of coupling a compound of formula (II) with an amine of formula (III) is performed in the presence of a base.
- 7. The process according to claim 6, wherein the base is selected from KOtBu, NaOtBu, K3PO4, Na2CO3, and Cs2CO3.
- 8. The process according to claim 1, wherein the process is performed using an alkali metal salt.
- 9. The process according to claim 8, wherein the alkali metal salt is selected from salts of potassium, rubidium, or cesium ions.
- 10. The process according to claim 9, wherein the alkali metal salt is selected from potassium carbonate or cesium carbonate.
- 11. The process according to claim 10, wherein the alkali metal salt is cesium carbonate.
- 12. The process according to claim 1, wherein X is selected from the group consisting of —Cl, —Br, —I, —F, —OTf, —OTs, iodonium, and diazo.
- 13. The process according to claim 1, wherein Y is Boc.
- 14. The process according to claim 1 for producing a diaryl amine compound of the formula:
- 15. The process according to claim 14 further comprising the step of removing group Y from the coupled amine to produce the compound of formula 24.
- 16. The process according to claim 14, wherein the process is performed using a transition metal catalyst.
- 17. The process according to claim 16, wherein the transition metal catalyst comprises palladium.
- 18. The process according to claim 17 wherein the catalyst is PdLn, wherein
each L independently is selected from —OAc, —O-tolyl, halogen, PPh3, dppe, dppf, dba, and BINAP; and n is an integer from 0-4.
- 19. The process according to claim 16, wherein the step of coupling a compound of formula 21 with an amine of formula 22 is performed in the presence of a base.
- 20. The process according to claim 19, wherein the base is selected from KOtBu, NaOtBu, K3PO4, Na2CO3, and Cs2CO3.
- 21. The process according to claim 14, wherein the process is performed using an alkali metal salt.
- 22. The process according to claim 21, wherein the alkali metal salt is selected from salts of potassium, rubidium, or cesium ions.
- 23. The process according to claim 22, wherein the alkali metal salt is selected from potassium carbonate or cesium carbonate.
- 24. The process according to claim 23, wherein the alkali metal salt is cesium carbonate.
- 25. The process according to claim 14, wherein X is selected from the group consisting of —Cl, —Br, —I, —F, —OTf, —OTs, iodonium, and diazo.
- 26. The process according to claim 14, wherein Y is Boc.
- 27. The process according to claim 1 for producing a diaryl amine compound of the formula:
- 28. The process according to claim 27, further comprising the step of removing group Y from the coupled amine to produce the compound of formula 44.
- 29. The process according to claim 27, wherein the process is performed using a transition metal catalyst.
- 30. The process according to claim 29, wherein the transition metal catalyst comprises palladium.
- 31. The process according to claim 30 wherein the catalyst is PdLn, wherein each L is independently selected from —OAc, —O-tolyl, halogen, PPh3, dppe, dppf, dba, and BINAP; and n is an integer from 0-4.
- 32. The process according to claim 29, wherein the step of coupling a compound of formula 41a with an amine of formula 42a is performed in the presence of a base.
- 33. The process according to claim 32, wherein the base is selected from KOtBu, NaOtBu, K3PO4, Na2CO3, and Cs2CO3.
- 34. The process according to claim 27, wherein the process is performed using an alkali metal salt.
- 35. The process according to claim 34, wherein the alkali metal salt is selected from salts of potassium, rubidium, or cesium ions.
- 36. The process according to claim 35, wherein the alkali metal salt is selected from potassium carbonate or cesium carbonate.
- 37. The process according to claim 36, wherein the alkali metal salt is cesium carbonate.
- 38. The process according to claim 27, wherein X is selected from the group consisting of —Cl, —Br, —I, —F, —OTf, —OTs, iodonium, and diazo.
- 39. The process according to claim 27, wherein Y is Boc.
- 40. The process according to claim 1 for producing a diaryl amine compound of the formula:
- 41. The process according to claim 40, further comprising the step of removing group Y from the coupled amine to produce the compound of formula 63.
- 42. The process according to claim 40, wherein the process is performed using a transition metal catalyst.
- 43. The process according to claim 42, wherein the transition metal catalyst comprises palladium.
- 44. The process according to claim 43, wherein the catalyst is PdLn, wherein
each L is independently selected from —OAc, —O-tolyl, halogen, PPh3, dppe, dppf, dba, and BINAP; and n is an integer from 0-4.
- 45. The process according to claim 42, wherein the step of coupling a compound of formula 61a with an amine of formula 42a is performed in the presence of a base.
- 46. The process according to claim 45, wherein the base is selected from KOtBu, NaOtBu, K3PO4, Na2CO3, and Cs2CO3.
- 47. The process according to claim 40, wherein the process is performed using an alkali metal salt.
- 48. The process according to claim 47, wherein the alkali metal salt is selected from salts of potassium, rubidium, or cesium ions.
- 49. The process according to claim 48, wherein the alkali metal salt is selected from potassium carbonate or cesium carbonate.
- 50. The process according to claim 49, wherein the alkali metal salt is cesium carbonate.
- 51. The process according to claim 40, wherein X is selected from the group consisting of —Cl, —Br, —I, —F, —OTf, —OTs, iodonium, and diazo.
- 52. The process according to claim 40, wherein Y is Boc.
- 53. The process according to claim 40 for producing a diaryl amine compound of the formula:
- 54. The process according to claim 53 further comprising the step of removing the Boc group from the coupled amine to produce the compound of formula 63.
- 55. The process according to any of claims 53 or 54 wherein the process is performed using cesium carbonate.
- 56. The process according to claim 54 further comprising the steps of:
(a) reacting the compound of formula 63 with a base; and (b) acidifying the reaction mixture formed in step (a) to produce a compound of the formula 75: 38
- 57. The process according to claim 56 wherein the base in step (a) is NaOH.
- 58. The process according to claim 56 wherein the acid in step (b) is HCl.
- 59. The process according to claim 56 further comprising the steps of:
(c) reacting the compound of formula 75 with diphosgene; and (d) treating the reaction mixture formed in step (c) with NH4OH to produce a compound of the formula 76: 39
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] The present application claims the benefit of U.S. provisional application Ser. No. 60/446,641, filed Feb. 10, 2003, and U.S. provisional application Ser. No. 60/474,272, filed May 28, 2003, the entire contents whereof is incorporated herein by reference.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60446641 |
Feb 2003 |
US |
|
60474272 |
May 2003 |
US |