Claims
- 1. An organo-Lewis acid of the formula BR′R″2 wherein B is boron, R′ is fluorinated biphenyl, and R″ is a fluorinated phenyl, fluorinated biphenyl, or fluorinated polycyclic fused ring group.
- 2. An organo-Lewis acid of claim 1 wherein said polycyclic fused ring groups are naphthyl, anthracenyl, or fluorenyl.
- 3. An organo-Lewis acid of claim 1 wherein each R″ is a fluorinated biphenyl with (i) only one or two hydrogens thereon or (ii) no hydrogens and all fluorines thereon.
- 4. An organo-Lewis acid of claim 1 wherein each R″ is a fluorinated biphenyl substituted with a phenyl group and wherein both said biphenyls and the phenyl groups have (i) only one or two hydrogens thereon or (ii) no hydrogens and all fluorines thereon.
- 5. Tris(perfluorobiphenyl)borane.
- 6. A solution of tris(perfluorobiphenyl)borane in a nonpolar solvent.
- 7. A process of preparing an organo-Lewis acid including the step of reacting a boron trihalide with perfluorobiphenyllithium at a temperature from −78° C. to room temperature.
- 8. A process of claim 7 wherein the boron trihalide is boron trichloride.
- 9. A process of claim 7 wherein the boron trihalide is added to a solution of the perfluorobiphenyllithium.
- 10. A process of claim 9 wherein the boron trihalide is boron trichloride.
- 11. A process of claim 10 wherein the boron trichloride is added to a solution of the perfluorobiphenyllithium which initially is at about −78° C.
- 12. A catalytic complex selected from the group consisting of:
A) a complex of the formula [CpCp′MMe(μ-Me)MeMCpCp′]⊕[MeBR′R″2]⊖B) a complex of the formula [CpCp′MH(μ-H)HMCpCp′]⊕[MeBR′R″2]⊖C) a complex of the formula [CpMMe2]⊕[MeBR′R″2]⊖D) a complex of the formula [C5HmR4-mXNRMMe]⊕[MeBR′R″2]⊖E) a complex of the formula [CpCp′MMe]⊕[MeBR′R″2]⊖where:
Cp and Cp′ each is C5HnR5-n where n is 0-5, or indenyl; R is an alkyl or benzyl or aryl or silyl group, each having 20 or less carbon atoms; M is Th, Zr, Hf, or Ti; Me is methyl; B is boron; H is hydrogen; R′ is fluorinated biphenyl; R″ is a fluorinated phenyl, fluorinated biphenyl, or fluorinated polycyclic fused ring group; m is 0-4; X is R′″2Si, R′″ being alkyl or aryl, either one having 10 or less carbon atoms; and N is nitrogen.
- 13. A catalytic complex of claim 12 of the formula
- 14. A complex of claim 13 wherein each R″ is fluorinated biphenyl.
- 15. A complex of claim 13 wherein R′ is nonafluorobiphenyl, and wherein each R″ is nonafluorobiphenyl.
- 16. A complex of claim 14 wherein each of Cp and Cp′ is η5-cyclopentadienyl, η5-dimethylcyclopentadienyl, or η5-pentamethylcyclopentadienyl.
- 17. A complex of claim 15 of the formula
- 18. A complex of claim 15 of the formula
- 19. A complex of claim 15 of the formula
- 20. A catalytic complex of claim 12 of the formula
- 21. A complex of claim 20 wherein each R″ is fluorinated biphenyl.
- 22. A complex of claim 20 wherein R′ is nonafluorobiphenyl, and wherein each R″ is nonafluorobiphenyl.
- 23. A complex of claim 22 wherein each of Cp and Cp′ is η5-cyclopentadienyl or η5-dimethylcyclopentadienyl.
- 24. A complex of claim 22 of the formula
- 25. A complex of claim 22 of the formula
- 26. A catalytic complex of claim 12 of the formula
- 27. A complex of claim 26 wherein each R″ is fluorinated biphenyl.
- 28. A complex of claim 26 wherein R′ is nonafluorobiphenyl, and wherein each R″ is nonafluorobiphenyl.
- 29. A complex of claim 27 wherein Cp is η5-cyclopentadienyl, η5-dimethylcyclopentadienyl, or η5-pentamethylcyclopentadienyl.
- 30. A complex of claim 28 of the formula
- 31. A complex of claim 28 of the formula
- 32. A complex of claim 28 of the formula
- 33. A complex of claim 28 of the formula
- 34. A complex of claim 28 of the formula
- 35. A complex of claim 28 of the formula
- 36. A complex of claim 28 of the formula
- 37. A catalytic complex of claim 12 of the formula
- 38. A complex of claim 37 wherein each R″ is fluorinated biphenyl.
- 39. A complex of claim 37 wherein R′ is nonafluorobiphenyl, and wherein each R″ is nonafluorobiphenyl.
- 40. A complex of claim 37 wherein M is Zr.
- 41. A complex of claim 37 wherein M is Ti.
- 42. A complex of claim 37 of the formula
- 43. A complex of claim 37 of the formula
- 44. A catalytic complex of claim 12 of the formula
- 45. A complex of claim 44 wherein each R″ is fluorinated biphenyl.
- 46. A complex of claim 44 wherein R′ is nonafluorobiphenyl, and wherein each R″ is nonafluorobiphenyl.
- 47. A complex of claim 44 wherein each of Cp and Cp′ is η5-cyclopentadienyl or η5-dimethylcyclopentadienyl or η5-pentamethylcyclopentadienyl.
- 48. A complex of claim 44 of the formula
- 49. A complex of claim 44 of the formula
- 50. A complex of claim 44 of the formula
- 51. A complex of claim 44 of the formula
- 52. A method of preparing a polyolefin polymer, which method comprises polymerizing the alpha olefin using as catalyst a catalytic complex selected from the group consisting of:
A) a complex of the formula [CpCp′MMe(μ-Me)MeMCpCp′]⊕[MeBR′R″2]⊖B) a complex of the formula [CpCp′MH(μ-H)HMCpCp′]⊕[MeBR′R″2]⊖C) a complex of the formula [CpMMe2]⊕[MeBR′R″2]⊖D) a complex of the formula [C5HmR4-mXNRMMe]⊕[MeBR′R″2]⊖E) a complex of the formula [CpCp′MMe]⊕[MeBR′R″2]⊖where:
Cp and Cp′ each is C5HnR5-n where n is 0-5, or indenyl; R is alkyl or benzyl or aryl or silyl, each of 20 or less carbon atoms; M is Th, Zr, Hf, or Ti; Me is methyl; B is boron; H is hydrogen; R′ is fluorinated biphenyl; R″ is a fluorinated phenyl, fluorinated biphenyl, or fluorinated polycyclic fused ring group; m is 0-4; X is R′″2Si, R′″ being alkyl or aryl, either one having 10 or less carbon atoms; and N is nitrogen.
- 53. The method of claim 52 wherein R′ is nonafluorobiphenyl, and wherein each R″ is nonafluorobiphenyl.
- 54. The method of claim 52 wherein said alpha olefin is ethylene or propylene.
- 55. The method of claim 52 wherein said catalytic complex is a complex of the formula
- 56. The method of claim 55 wherein R′ is nonafluorobiphenyl, and wherein each R″ is nonafluorobiphenyl.
- 57. The method of claim 55 wherein said alpha olefin is ethylene or propylene.
- 58. The method of claim 55 wherein the catalytic complex used is:
a) [(η5-C5H5)2ZrMe(μ-Me)MeZr(η5-C5H5)2]⊕[MePBB]⊕; b) [(η5-1,2-Me2C5H3)2ZrMe(μ-Me)MeZr(η5-1,2-Me2C5H3)2]⊕[MePBB]⊖; or c) [(η5-Me5C5)2ZrMe(μ-Me)MeZr(η5-Me5C5)2]⊕[MePBB]⊖.
- 59. The method of claim 52 wherein said catalytic complex is a complex of the formula
- 60. The method of claim 59 wherein R′ is nonafluorobiphenyl, and wherein each R″ is nonafluorobiphenyl.
- 61. The method of claim 59 wherein said alpha olefin is ethylene or propylene.
- 62. The method of claim 59 wherein the catalytic complex used is:
a) [(η5-C5H5)2ZrH(μ-H)HZr(η5-C5H5)2]⊕[MePBB]⊖ or b) [(η5-1,2-Me2C5H3)2ZrH(μ-H)HZr(η5-1,2-Me2C5H3)2]⊕[MePBB]⊖.
- 63. The method of claim 52 wherein said catalytic complex is a complex of the formula
- 64. The method of claim 63 wherein R′ is nonafluorobiphenyl, and wherein each R″ is nonafluorobiphenyl.
- 65. The method of claim 63 wherein said alpha olefin is styrene or ethylene and 1-hexene.
- 66. The method of claim 63 wherein the catalytic complex used is:
a) [(η5-C5H5)TiMe2]⊕[MePBB]⊖; b) [(η5-C5H5)ZrMe2]⊕[MePBB]⊖; c) [(η5-C5H5)HfMe2]⊕[MePBB]⊖; d) [(η5-Me2C5H3)HfMe2]⊕[MePBB]⊖; e) [(η5-Me2C5H3)TiMe2]⊕[MePBB]⊖; f) [(η5-Me5C5)ZrMe2]⊕[MePBB]⊖; or g) [(η5-Me5C5)HfMe2]⊕[MePBB]⊖.
- 67. The method of claim 52 wherein said catalytic complex is a complex of the formula
- 68. The method of claim 67 wherein R′ is nonafluorobiphenyl, and wherein each R″ is nonafluorobiphenyl.
- 69. The method of claim 67 wherein M is Zr.
- 70. The method of claim 67 wherein M is Ti.
- 71. The method of claim 67 wherein said alpha olefin is ethylene or ethylene and 1-hexene.
- 72. The method of claim 67 wherein the catalytic complex used is:
a) [Me2Si(tBuN)(C5Me4)ZrMe]⊕[MeBR′R″2]⊖; or b) [Me2Si(tBuN)(C5Me4)TiMe]⊕[MeBR′R″2]⊖.
- 73. The method of claim 52 wherein said catalytic complex is a complex of the formula
- 74. The method of claim 73 wherein R′ is nonafluorobiphenyl, and wherein each R″ is nonafluorobiphenyl.
- 75. The method of claim 73 wherein said alpha olefin is propylene.
- 76. The method of claim 73 wherein the catalytic complex used is:
- 77. A method of preparing polytetrahydrofuran, which method comprises polymerizing tetrahydrofuran using as catalyst a catalytic complex of the formula
- 78. The method of claim 77 wherein M is zirconium.
- 79. The method of claim 77 wherein the catalytic complex used is
REFERENCE TO RELATED APPLICATIONS
[0001] This application is a division of prior copending application Ser. No. 09/329,431, filed Jun. 10, 1999, which is a continuation-in-part of application Ser. No.09/220,741, filed Dec. 23, 1998, now U.S. Pat. No. 6,087,460, issued Jul. 11, 2000, which is a division of application Ser. No. 08/800,548, filed Feb. 18, 1997, now U.S. Pat. No. 5,856,256, issued Jan. 5, 1999, which in turn claims priority of U.S. provisional application Ser. No.60/011,920, filed Feb. 20, 1996.
Government Interests
[0002] This invention was made with Government support under Contract No. DE-FG02-86ER13511 awarded by the Department of Energy. The Government has certain rights in this invention.
Divisions (1)
|
Number |
Date |
Country |
Parent |
09329431 |
Jun 1999 |
US |
Child |
09899698 |
Jul 2001 |
US |