Claims
- 1. A catalyst system comprising an activator and one or more heteroatom substituted phenoxide group 3 to 10 transition or lanthanide metal compounds wherein the metal is bound to the oxygen of the phenoxide group and provided that:
a) if more than one heteroatom substituted phenoxide is present it is not bridged to the other heteroatom substituted phenoxide, b) if the metal is a group 4 metal then the carbon ortho to the carbon bound to the oxygen of the phenoxide may not be bound to an aldehyde or an ester, and c) the carbon ortho to the carbon bound to the oxygen of the phenoxide may not be bound to the C1 carbon in a group represented by the formula: 12 wherein R6 and R7 are independently hydrogen, halogen, a hydrocarbon group, a heterocyclic compound residue, an oxygen containing group, a nitrogen containing group, a boron containing group, an sulfur containing group, a phosphorus containing group, a silicon containing group, a germanium containing group, or a tin containing group, and R1 and R2 may be bonded to each other to form a ring.
- 2. The catalyst system of claim 1 wherein the activator is an aluminum alkyl, an alumoxane, a modified alumoxane, a borane, a borate or a non-coordinating anion.
- 3. The catalyst system of claim 1 wherein the transition metal is a group 4 metal.
- 4. The catalyst system of claim 1 wherein the transition metal is zirconium.
- 5. The catalyst system of claim 1 wherein the heteroatom substituted phenoxide transition metal compound is selected from the group consisting of:
bis(N-benzylidene-2-hydroxy-3,5,di-t-butylbenzylamine) zirconium(IV) dibenzyl; bis(N-benzylidene-2-hydroxy-3,5,di-t-butylbenzylamine) zirconium(IV) dichloride; bis(2-(2H-benzotriazol-2-yl)-4,6-di-t-amylphenoxide)zirconium(IV) dibenzyl; bis(N-benzylidene-2-hydroxy-3,5,di-t-butylbenzylamine) titanium(IV) dibenzyl; bis(2-(2H-benzotriazol-2-yl)-4,6-di-t-amylphenoxide)zirconium(IV) dibenzyl; bis(2-(2H-benzotriazol-2-yl)-4,6-di-t-amylphenoxide)zirconium(IV) dichloride; bis(2-(2H-benzotriazol-2-yl)-4,6-di-t-amylphenoxide)zirconium(IV) di(bis(dimethylamide)); bis(2-(2H-benzotriazol-2-yl)-4,6-di-(1′,1′-dimethylbenzyl)phenoxide)zirconium(IV) dibenzyl; bis(2-(2H-benzotriazol-2-yl)-4,6-di-t-amylphenoxide)titanium(IV) dibenzyl; bis(2-(2H-benzotriazol-2-yl)-4,6-di-(1′,1′-dimethylbenzyl)phenoxide)titanium(IV) dibenzyl; bis(2-(2H-benzotriazol-2-yl)-4,6-di-(1′,1′-dimethylbenzyl)phenoxide)titanium(IV) dichloride; bis(2-(2H-benzotriazol-2-yl)-4,6-di-(1′,1′-dimethylbenzyl)phenoxide)hafnium(IV) dibenzyl; and (N-phenyl-3,5-di-(1′,1′-dimethylbenzyl)salicylimino)zirconium(IV) tribenzyl.
- 6. The catalyst system of claim 5 further comprising an activator comprising one or more of an aluminum alkyl, an alumoxane, a modified alumoxane, a borane, a borate or a non-coordinating anion.
- 7. The catalyst system of claim 1 wherein either the transition metal compound or the activator or both are placed on a support.
- 8. The catalyst system of claim 1 further comprising a Ziegler-Natta catalyst.
- 9. The catalyst system of claim 1 further comprising a mono-or bis-cyclopentadienyl group 4, 5 and 6 transition metal compound and an optional second activator.
- 10. The catalyst system of claim 1 further comprising a second activator.
- 11. The catalyst system of claim 1 wherein the activator is one or more of alumoxane, tris (2,2′,2″-nonafluorobiphenyl) fluoroaluminate, triphenyl boron, triethyl boron, tri-n-butyl ammonium tetraethylborate, triaryl borane, tri (n-butyl) ammonium tetrakis (pentafluorophenyl) boron or a trisperfluorophenyl boron, or diethylaluminum chloride.
- 12. A catalyst system comprising the reaction product of an activator and one or more heteroatom substituted phenoxide transition metal compounds represented by the following formulae:
- 14. The catalyst system of claim 13 wherein the activator is an aluminum alkyl, an alumoxane, a modified alumoxane, a borane, a borate, a non-coordinating anion or a mixture thereof.
- 15. The catalyst system of claim 13 wherein Q is a bond to any of R2 to R5 and the R group that Q is bound to is a heteroatom containing group.
- 16. The catalyst system of claim 13 wherein the heteroatom containing group is a triazole or an oxyzole.
- 17. The catalyst system of claim 13 wherein the heteroatom in the heteroatom containing group is nitrogen and/or oxygen.
- 18. The catalyst system of claim 13 wherein the R1 group is a C4 to C20 alkyl group.
- 19. The catalyst system of claim 13 wherein R1 is a tertiary alkyl group.
- 20. The catalyst system of claim 13 wherein R5 is bound to the metal.
- 21. The catalyst system of claim 13 wherein the R2 group is a butyl, isobutyl, tertiary butyl, pentyl hexyl, heptyl, isohexyl, octyl, isooctyl, decyl, nonyl, or dodecyl group.
- 22. The catalyst system of claim 13 wherein two or more R groups have formed a five or six membered ring.
- 23. The catalyst system of claim 13 wherein two or more R groups have formed a multi-ring system.
- 24. The catalyst system of claim 13 wherein M is zirconium, titanium or hafnium.
- 25. The catalyst system of claim 13 wherein n is 4.
- 26. The catalyst system of claim 13 wherein n is 3.
- 27. The catalyst system of claim 13 wherein Q is a halogen or an alkyl group.
- 28. The catalyst system of claim 13 wherein Q is an amide, carboxylate, carbamate, thiolate, hydride or alkoxide group.
- 29. The catalyst system of claim 13 further comprising a support.
- 30. The catalyst system of claim 13 wherein either the transition metal compound or the activator or the reaction product thereof are placed on a support selected from the group consisting of talc; silica, magnesium chloride, alumina, silica-alumina; polyethylene, polypropylene, polystyrene; or a mixture thereof.
- 31. The catalyst system of claim 13 wherein prior to being combined with the transition metal compound and/or the activator and/or the reaction product thereof the support is partially or completely dehydrated.
- 32. The catalyst system of claim 13 wherein the transition metal compound and the activator are combined in ratios of about 1000:1 to about 0.5:1.
- 33. The catalyst system of claim 13 wherein the transition metal compound and the activator are combined in ratios of about 300:1 to about 1:1.
- 34. The catalyst system of claim 13 wherein the activator is a borane and the transition metal compound and the borane are combined in ratios of about 1:1 to about 10:1
- 35. The catalyst system of claim 13 wherein the activator is an alkyl aluminum compound and the transition metal compound and the alkyl aluminum compound are combined in ratios of about 0.5:1 to about 10:1
- 36. The catalyst system of claim 13 wherein two or more R groups do not form a five membered ring.
- 37. The catalyst system of claim 13 wherein M is zirconium.
- 38. A process for polymerizing olefins comprising combining one or more olefins with a catalyst system comprising the reaction product of one or more activators and one or more heteroatom substituted phenoxide group 4 to 10 transition metal or lanthanide metal compounds wherein the metal is bound to the oxygen of the phenoxide group and provided that:
a) if more than one heteroatom substituted phenoxide is present it is not bridged to the other heteroatom substituted phenoxide, b) if the metal is a group 4 metal then the carbon ortho to the carbon bound to the oxygen of the phenoxide may not be bound to an aldehyde or an ester, and c) the carbon ortho to the carbon bound to the oxygen of the phenoxide may not be bound to the C1 carbon in a group represented by the formula: 15 wherein R6 and R7 are independently hydrogen, halogen, a hydrocarbon group, a heterocyclic compound residue, an oxygen containing group, a nitrogen containing group, a boron containing group, an sulfur containing group, a phosphorus containing group, a silicon containing group, a germanium containing group, or a tin containing group, and R1 and R2 may be bonded to each other to form a ring.
- 39. The process of claim 38 wherein the heteroatom substituted phenoxide transition metal compound is represented by the of the following formulae:
- 40. The process of claim 38 wherein the activator is an aluminum alkyl, an alumoxane, a modified alumoxane, a borane, a borate, a non-coordinating anion or a mixture thereof.
- 41. The process of claim 38 wherein Q is a bond to any of R2 to R5 and the R group that Q is bound to is a heteroatom containing group.
- 42. The process of claim 38 wherein the heteroatom containing group is an imime, triazole, or oxyzole.
- 43. The process of claim 38 wherein the heteroatom in the heteroatom containing group is nitrogen and/or oxygen.
- 44. The process of claim 38 wherein the R1 group is a C4 to C20 alkyl group.
- 45. The process of claim 38 wherein the R1 group is a butyl, isobutyl, pentyl hexyl, heptyl, isohexyl, octyl, isooctyl, decyl, nonyl, or dodecyl group.
- 46. The process of claim 38 wherein two or more R groups have formed a five or six membered ring.
- 47. The process of claim 38 wherein two or more R groups have formed a multi ring system.
- 48. The process of claim 38 wherein M is zirconium, titanium or hafnium.
- 49. The process of claim 38 wherein n is 3 or 4.
- 50. The process of claim 38 wherein Q is a halogen or an alkyl group.
- 51. The process of claim 38 wherein Q is an amide, carboxylate, carbamate, thiolate, hydride or alkoxide group.
- 52. The process of claim 38 wherein the catalyst system and the olefin are reacted in the gas phase.
- 53. The process of claim 38 wherein the catalyst system and the olefin are reacted in the slurry phase.
- 54. The process of claim 38 wherein the catalyst system and the olefin are reacted in the slurry phase solution phase.
- 55. The process of claim 38 wherein the catalyst system and the olefin are reacted under high pressure.
STATEMENT OF RELATED APPLICATIONS
[0001] This application is a continuation in part of U.S. Ser. No. 09/216,594, filed Dec. 18, 1998 and claims priority therefrom.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09216594 |
Dec 1998 |
US |
Child |
09248147 |
Feb 1999 |
US |