Claims
- 1. A process for the polymerization of olefins, comprising the step of contacting, at a temperature of about −50° C. to about +250° C.:
(a) an olefin selected from the group consisting of an α-olefin, a styrene, a cyclopentene, and a norbornene; and (b) a first compound of the formula (X) 14 wherein: R1, R2, R3 and R4 are each independently hydrocarbyl, substituted hydrocarbyl or silyl; R15 is a divalent organic moiety; each X is independently an anion; n is an integer equal to the valence of M minus 2; and M is Ti, Zr, Hf, V, Cr, Sc, Y or a rare earth metal.
- 2. The process as recited in claim 1 wherein the olefin, first compound and a second compound W are contacted, wherein the second compound W is a neutral Lewis acid capable of abstracting an X− from the first compound to form WX−, provided that the anion formed is a weakly coordinating anion, or a cationic Lewis or Bronsted acid whose counterion is a weakly coordinating anion; and provided that when none of X is alkyl, acyl or hydride, said second compound is capable of transferring hydride or alkyl to M.
- 3. The process as recited in claim 1 wherein R15 is
- 4. The process as recited in claim 1 wherein R1, R2, R3 and R4 are each independently alkyl or silyl.
- 5. The process as recited in claim 4 wherein R1, R2, R3 and R4 are all the same.
- 6. The process as recited in claim 3 wherein:
R5, R6, R7 and R8 are each independently alkyl or hydrogen; and R9, R10, R11 and R12 are all hydrogen.
- 7. The process as recited in claim 1 wherein said olefin is an α-olefin.
- 8. The process as recited in claim 7 wherein said α-olefin is ethylene.
- 9. The process as recited in claim 8 wherein a catalyst which oligomerizes ethylene to an α-olefin is also present.
- 10. The process as recited in claim 1 wherein R15 contains one or more nitrogen or silicon atoms.
- 11. The process as recited in claim 1 wherein M is Zr or Ti.
- 12. The process as recited in claim 1 wherein the first compound is supported on a substrate.
- 13. The process as recited in claim 1 wherein the olefin and first compound are contacted in the presence of another active olefin polymerization catalyst.
- 14. The process as recited in claim 13 wherein the another active olefin polymerization catalyst comprises a late transition metal catalyst, a Ziegler-Natta catalyst and/or a metallocene-type catalyst.
- 15. A process for the polymerization of olefins, comprising the step of contacting, at a temperature of about −50° C. to about +250° C., a transition metal complex of a ligand of the formula
- 16. The process as recited in claim 15 wherein R15 is
- 17. The process as recited in claim 15 wherein R1, R2, R3 and R4 are each independently alkyl or silyl.
- 18. The process as recited in claim 17 wherein R1, R2, R3 and R4 are all the same.
- 19. The process as recited in claim 16 wherein:
R5, R6, R7 and R8 are each independ ently alkyl or hydrogen; and R9, R10, R11 and R12 are all hydrogen.
- 20. The process as recited in claim 15 wherein said olefin is an α-olefin.
- 21. The process as recited in claim 20 wherein the α-olefin is ethylene.
- 22. The process as recited in claim 21 wherein a catalyst which oligomerizes ethylene to an α-olefin is also present.
- 23. The process as recited in claim 15 wherein R15 contains one or more nitrogen or silicon atoms.
- 24. The process as recited in claim 15 wherein M is Zr or Ti.
- 25. The process as recited in claim 15 wherein the first compound is supported on a substrate.
- 26. The process as recited in claim 15 wherein the olefin and transition metal complex are contacted in the presence of another active olefin polymerization catalyst.
- 27. The process as recited in claim 26 wherein the another active olefin polymerization catalyst comprises a late transition metal catalyst, a Ziegler-Natta catalyst and/or a metallocene-type catalyst.
- 28. An anion of the formula
- 29. The anion as recited in claim 28 wherein R15 is
- 30. The anion as recited in claim 29 wherein R1, R2, R3 and R4 are each independently alkyl or silyl.
- 31. The anion as recited in claim 30 wherein R1, R2, R3 and R4 are all the same.
- 32. The anion as recited in claim 29 wherein:
R5, R6, R7 and R8 are each independently alkyl or hydrogen; and R9, R10, R11 and R12 are all hydrogen.
- 33. The anion as recited in claim 29 wherein R15 contains one or more silicon or nitrogen atoms.
- 34. A compound of the formula:
- 35. The compound as recited in claim 34 wherein R15 is
- 36. The compound as recited in claim 35 wherein R1, R2, R3 and R4 are each independently alkyl or silyl.
- 37. The compound as recited in claim 36 wherein R1, R2, R3 and R4 are all the same.
- 38. The compound as recited in claim 35 wherein:
R5, R6, R7 and R8 are each independently alkyl or hydrogen; and R9, R10, R11 and R12 are all hydrogen.
- 39. The compound as recited in claim 34 wherein M is Ti or Zr.
- 40. A process for the production of a bis(carboximidamidatonate), comprising the step of reacting a bis(alkyl metal salt) with 2 moles of a carbodiimide.
- 41. The process as recited in claim 40 wherein said metal is magnesium.
- 42. A process for preparing a transition metal complex of a bis(carboximidamidatonate), comprising, reacting a salt of said transition metal with a dialkali metal salt or alkaline earth metal salt of a bis(carboximidamidatonate).
- 43. The process as recited in claim 42 wherein said dialkali metal salt or alkaline earth metal salt of a bis(carboximidamidatonate) is a magnesium salt.
- 44. The process as recited in claim 42 wherein said transition metal is Ti, Zr, Hf, V, Cr, Sc, Y or a rare earth metal.
- 45. The process as recited in claim 44 wherein said transition metal is Ti or Zr.
Parent Case Info
[0001] This application claims priority under 35 U.S.C. §119 from U.S. Provisional Application Ser. No. 60/098,668 (filed Sep. 1, 1998), which is incorporated by reference herein as if fully set forth.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60098668 |
Sep 1998 |
US |
Divisions (1)
|
Number |
Date |
Country |
Parent |
09383900 |
Aug 1999 |
US |
Child |
09824072 |
Apr 2001 |
US |