Claims
- 1. An organoborane represented by the formula:
- 2. An organoborane of claim 1 wherein n is 1, and both R″ groups are the same as each other.
- 3. An organoborane of claim 2 wherein both R″ groups are fluoroaryl groups having at least one additional substituent other than fluorine.
- 4. An organoborane of claim 3 wherein R′ and both R″ groups are all the same as each other.
- 5. An organoborane of claim 1 wherein n is 2, and wherein the two R′ groups are the same as each other.
- 6. An organoborane of claim 1 wherein n is 1, and wherein the two R″ groups are the same as each other and differ from R′.
- 7. An organoborane of claim 1 having the formula:
- 8. An organoborane of claim 1 having the formula:
- 9. An organoborane of claim 1 wherein said organoborane is a Lewis acid of a strength essentially equivalent to or greater than that of the corresponding organoborane in which each substituent other than fluorine is replaced by a fluorine atom.
- 10. An organoborane of claim 1 wherein said organoborane has a greater solubility in n-hexane at 20° C. than that of the corresponding organoborane in which each substituent other than fluorine is replaced by a fluorine atom.
- 11. An organoborane represented by the formula:
- 12. An organoborane of claim 11 wherein said compound is:
tris(nonafluoroanthracenyl)borane, bis(nonafluoroanthracenyl)(pentafluorophenyl)borane, or (nonafluoroanthracenyl)bis(pentafluorophenyl)borane.
- 13. An organoborane of claim 11 wherein said compound is:
tris(undecafluorotetrahydronaphthyl)borane, bis(undecafluorotetrahydronaphthyl)(pentafluorophenyl)borane, or undecafluorotetrahydronaphthylbis(pentafluorophenyl)borane.
- 14. An organoborane of claim 11 wherein said compound is:
tris(nonafluorofluorenyl)borane, bis(nonafluorofluorenyl)(pentafluorophenyl)borane, or nonafluorofluorenylbis(pentafluorophenyl)borane.
- 15. A composition comprising a solution of an organoborane of any of claims 1-14 in a nonpolar solvent.
- 16. A composition comprising an organoborane supported on a catalyst support material, said organoborane being a triorganoborane selected from those of set forth in A), or in B) or in C) as follows:
A) an organoborane represented by the formula: BR′nR″3-nwherein R′ is a fluoroaryl group having at least one additional substituent other than fluorine, wherein each R″ is, independently, (i) a fluoroaryl group having at least one additional substituent other than fluorine, or (ii) a fluorinated aryl group devoid of additional substitution, and n is 1 or 2; B) an organoborane represented by the formula: BR′R″2wherein R′ is a fluorinated biphenyl group having no more than two hydrogen atoms thereon, and R″ is (i) a fluorinated biphenyl group having no more than two hydrogen atoms thereon, (ii) a fluorinated polycyclic fused ring group having no more than two hydrogen atoms thereon, or (iii) a phenyl group having no more than two hydrogen atoms thereon; C) an organoborane represented by the formula: B(R1)n(R2)3-nwherein each R1 is, independently, a perfluorinated polycyclic fused ring group in which the ring system is totally aromatic or is partially aromatic and partially cycloaliphatic, wherein each R2 is a pentafluorophenyl group, and wherein n is 1 to 3.
- 17. A composition of claim 16 wherein said triorganoborane is an organoborane selected from A).
- 18. A composition of claim 16 wherein said triorganoborane is a perfluorinated organoborane selected from B).
- 19. A composition of claim 18 wherein said triorganoborane is nonafluorobiphenylbis(pentafluorophenyl)borane.
- 20. A composition of claim 18 wherein said triorganoborane is tris(perfluorobiphenyl)borane.
- 21. A composition of claim 16 wherein said triorganoborane is an organoborane selected from C).
- 22. A composition of any of claims 16-21 wherein the catalyst support material consists essentially of an inorganic oxide.
- 23. A composition of any of claims 16-21 wherein the catalyst support material consists essentially of porous silica.
- 24. A complex which comprises a cation formed from a d-block or f-block metal compound by loss of a leaving group and an anion formed by transfer of the leaving group to an organoborane of the formula:
- 25. A complex of claim 24 wherein the metal of said metal compound is a metal from Groups 4 to 8 of the Periodic Table.
- 26. A complex of claim 24 wherein the metal of said metal compound is thorium, titanium, zirconium, or hafnium.
- 27. A complex of claim 24 wherein said metal compound is a metallocene represented by the formula:
- 28. A complex of claim 27 wherein M is a Group 4 metal atom, wherein a is 0, wherein b is 1, and the sum of c and d is 3.
- 29. A complex of claim 27 wherein M is a Group 4 metal atom, wherein b is 2 and the sum of c and d is 2.
- 30. A complex of claim 24 wherein said metal compound is a metallocene represented by the formula:
- 31. A complex of claim 30 wherein M is a titanium, zirconium or hafnium atom, L is a cyclopentadienyl group or a substituted cyclopentadienyl group, Z is a dihydrocarbylsilyl group, Y is a hydrocarbylamido group, R is methyl, n is 2, and m is 0.
- 32. A complex of claim 30 wherein M is a titanium or zirconium atom, L is a tetramethylcyclopentadienyl group, Z is a dimethylsilyl group, Y is a tert-butylamido group, R is methyl, n is 2, and m is 0.
- 33. A complex of claim 24 wherein said organoborane is a Lewis acid of a strength essentially equivalent to or greater than that of the corresponding organoborane in which each substituent other than fluorine is replaced by a fluorine atom.
- 34. A complex of claim 24 wherein said organoborane has a greater solubility in n-hexane at 20° C. than that of the corresponding organoborane in which each substituent other than fluorine is replaced by a fluorine atom.
- 35. A complex of claim 24 wherein said organoborane has the formula:
- 36. A complex of claim 24 wherein said organoborane has the formula:
- 37. A complex of claim 24 wherein at least one said additional univalent substituent of said organoborane is an electron withdrawing substituent.
- 38. A complex of claim 24 wherein at least one said additional univalent substituent of said organoborane is a solubility-enhancing substituent.
- 39. A complex which comprises a cation formed from a d-block or f-block metal compound by loss of a leaving group and an anion formed by transfer of the leaving group to an organoborane of the formula:
- 40. A complex of claim 39 wherein the metal of said metal compound is a metal from Groups 4 to 8 of the Periodic Table.
- 41. A complex of claim 39 wherein the metal of said metal compound is thorium, titanium, zirconium, or hafnium.
- 42. A complex of claim 39 wherein said metal compound is a metallocene represented by the formula:
- 43. A complex of claim 42 wherein M is a Group 4 metal atom, wherein a is 0, wherein b is 1, and the sum of c and d is 3.
- 44. A complex of claim 42 wherein M is a Group 4 metal atom, wherein b is 2 and the sum of c and d is 2.
- 45. A complex of claim 39 wherein said metal compound is a metallocene represented by the formula:
- 46. A complex of claim 45 wherein M is a titanium, zirconium or hafinium atom, L is a cyclopentadienyl group or a substituted cyclopentadienyl group, Z is a dihydrocarbylsilyl group, Y is a hydrocarbylamido group, R is methyl, n is 2, and m is 0.
- 47. A complex of claim 45 wherein M is a titanium or zirconium atom, L is a tetramethylcyclopentadienyl group, Z is a dimethylsilyl group, Y is a tert-butylamido group, R is methyl, n is 2, and m is 0.
- 48. A complex of claim 39 wherein said organoborane is tris(nonafluoroanthracenyl)borane, bis(nonafluoroanthracenyl)(pentafluorophenyl)borane, or (nonafluoroanthracenyl)bis(pentafluorophenyl)borane.
- 49. A complex of claim 39 wherein said organoborane is tris(undecafluorotetrahydronaphthyl)borane, bis(undecafluorotetrahydronaphthyl)(pentafluorophenyl)borane, or undecafluorotetrahydronaphthylbis(pentafluorophenyl)borane.
- 50. A complex of claim 39 wherein said organoborane is tris(nonafluorofluorenyl)borane, bis(nonafluorofluorenyl)(pentafluorophenyl)borane, or nonafluorofluorenylbis(pentafluorophenyl)borane.
- 51. A process for preparing a catalytic complex or ion pair, which process comprises contacting a d-block or f-block metal compound having at least one leaving group with an organoborane of the formula:
- 52. A process for preparing a catalytic complex or ion pair, which process comprises contacting a d-block or f-block metal compound having at least one leaving group with an organoborane of the formula:
- 53. A process of claim 51 or 52 wherein said metal compound is a metallocene represented by the formula:
- 54. A process of claim 53 wherein M is a Group 4 metal atom, wherein a is 0, wherein b is 1, and the sum of c and d is 3.
- 55. A process of claim 53 wherein M is a Group 4 metal atom, wherein b is 2 and the sum of c and d is 2.
- 56. A process of claim 51 or 52 wherein said metal compound is a metallocene represented by the formula:
- 57. A process of claim 56 wherein M is a titanium, zirconium or hafnium atom, L is a cyclopentadienyl group or a substituted cyclopentadienyl group, Z is a dihydrocarbylsilyl group, Y is a hydrocarbylamido group, R is methyl, n is 2, and m is 0.
- 58. A process of claim 56 wherein M is a titanium or zirconium atom, L is a tetramethylcyclopentadienyl group, Z is a dimethylsilyl group, Y is a tert-butylamido group, R is methyl, n is 2, and m is 0.
- 59. A process for polymerizing a polymerizable olefinic monomer or copolymerizing two or more copolymerizable olefinic monomers, which process comprises contacting said monomer or monomers with a polymerization catalyst complex which comprises a cation formed from a d-block or f-block metal compound by abstraction therefrom of a leaving group, and an anion formed by unification of the leaving group with an organoborane of the formula:
- 60. A process for polymerizing a polymerizable olefinic monomer or copolymerizing two or more copolymerizable olefinic monomers, which process comprises contacting said monomer or monomers with a polymerization catalyst complex which comprises a cation formed from a d-block or f-block metal compound by abstraction therefrom of a leaving group, and an anion formed by unification of the leaving group with an organoborane of the formula:
- 61. A process of claim 59 or 60 wherein said metal compound is a metallocene represented by the formula:
- 62. A process of claim 61 wherein M is a Group 4 metal atom, wherein a is 0, wherein b is 1, and the sum of c and d is 3.
- 63. A process of claim 61 wherein M is a Group 4 metal atom, wherein b is 2 and the sum of c and d is 2.
- 64. A process of claim 59 or 60 wherein said metal compound is a metallocene represented by the formula:
- 65. A process of claim 64 wherein M is a titanium, zirconium or hafnium atom, L is a cyclopentadienyl group or a substituted cyclopentadienyl group, Z is a dihydrocarbylsilyl group, Y is a hydrocarbylamido group, R is methyl, n is 2, and m is 0.
- 66. A process of claim 64 wherein M is a titanium or zirconium atom, L is a tetramethylcyclopentadienyl group, Z is a dimethylsilyl group, Y is a tert-butylamido group, R is methyl, n is 2, and m is 0.
- 67. A process of claim 59 or 60 wherein said monomer or monomers comprise(s) a 1-olefin, a vinylaromatic monomer, or an ester of acrylic or methacrylic acid.
REFERENCE TO RELATED APPLICATIONS
[0001] This application is a division of prior copending application Ser. No. 09/329,765, filed Jun. 10, 1999, which is a continuation-in-part of application Ser. No. 09/220,741, filed Dec. 23, 1998, 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 the benefit of U.S. provisional application No. 60/011,920, filed Feb. 20, 1996. Reference is also made to commonly-owned U.S. application Ser. No. 09/329,431, filed Jun. 10, 1999.
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.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60011920 |
Feb 1996 |
US |
Divisions (2)
|
Number |
Date |
Country |
Parent |
09329765 |
Jun 1999 |
US |
Child |
09863721 |
May 2001 |
US |
Parent |
08800548 |
Feb 1997 |
US |
Child |
09220741 |
Dec 1998 |
US |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
09220741 |
Dec 1998 |
US |
Child |
09329765 |
Jun 1999 |
US |