Claims
- 1. A catalyst composition comprising in combination:
- a) a metal complex corresponding to the formula: C.sub.pI MX.sub.p L.sub.q
- that has been or is rendered catalytically active by combination with an activating cocatalyst or by use of an activating technique,
- wherein: M is a metal of Group 4 of the Periodic Table of the Elements having an oxidation state of +2, +3 or +4, bound in an .eta..sup.5 bonding mode to one or two C.sub.p groups;
- C.sub.p independently each occurrence is a cyclopentadienyl-, indenyl-, tetrahydroindenyl-, fluorenyl-, tetrahydrofluorenyl-, or octahydrofluorenyl-group optionally substituted with from 1 to 8 substituents independently selected from the group consisting of hydrocarbyl, halo, halohydrocarbyl, aminohydrocarbyl, hydrocarbyloxy, dihydrocarbylamino, dihydrocarbylphosphino, silyl, aminosilyl, hydrocarbyloxysilyl, and halosilyl groups containing up to 20 non-hydrogen atoms, or further optionally two such C.sub.p groups may be joined together by a divalent substituent selected from the group consisting of hydrocarbadiyl, halohydrocarbadiyl, hydrocarbyleneoxy, hydrocarbyleneamino, siladiyl, halosiladiyl, and divalent aminosilane groups containing up to 20 non-hydrogen atoms;
- X independently each occurrence is a monovalent anionic .sigma.-bonded ligand group, a divalent anionic .sigma.-bonded ligand group having both valences bonded to M, or a divalent anionic .sigma.-bonded ligand group having one valency bonded to M and one valency bonded to a C.sub.p group, said X containing up to 60 nonhydrogen atoms;
- independently each occurrence is a neutral Lewis base ligand having up to 20 atoms;
- I is one or two;
- p is 0, 1 or 2, and is I less than the formal oxidation state of M when X is an monovalent anionic .sigma.-bonded ligand group or a divalent anionic .sigma.bonded ligand group having one valency bonded to M and one valency bonded to a C.sub.p group, or p is I +1 less than the formal oxidation state of M when X is a divalent anionic .sigma.-bonded ligand group having both valencies bonded to M; and
- q is 0, 1 or 2; and
- b) a Group 13 compound according to the formula R.sup.1.sub.2 M"(NR.sup.2.sub.2),
- wherein R.sup.1 and R.sup.2 independently each occurrence is a hydrocarbyl, silyl, halocarbyl, halohydrocarbyl, hydrocarbyl-substituted silyl, halocarbyl-substituted silyl, or halohydrocarbyl-substituted silyl group, said R.sup.1 and R.sup.2 each having from 1 to 30 carbon, silicon, or mixtures of carbon and silicon atoms, and
- M" is a Group 13 metal,
- the molar ratio of a):b) being from 1:0.1 to 1:100; or the resulting derivative, reaction product or equilibrium mixture resulting from such combination.
- 2. A catalyst composition according to claim 1 wherein the Group 13 compound corresponds to the formula R.sup.1.sub.2 AI(NR.sup.2.sub.2) wherein R.sup.1 and R.sup.2, independently each occurrence are hydrocarbyl, halocarbyl, halohydrocarbyl, silyl, or hydrocarbyl-substituted silyl radicals of from 1 to 20 carbon, silicon or mixtures of carbon and silicon atoms.
- 3. A catalyst composition according to claim 2 wherein the Group 13 compound is dimethylaluminum-N,N-dimethylamide, dimethylaluminum-N,N-diethylamide, dimethylaluminum-N,N-diisopropylylamide, dimethylaluminum-N,N-diisobutylamide, diethylaluminum-N,N-dimethylamide, diethylaluminum-N,N-diethylamide, diethylaluminum-N,N-diisopropylylamide, diethylaluminum-N,N-diisobutylamide, diisopropylaluminum-N,N-dimethylamide, diisopropylaluminum-N,N-diethylamide, diisopropylaluminum-N,N-diisopropylylamide, diisopropylaluminum-N,N-diisobutylamide, diisobytylaluminum-N,N-dimethylamide, diisobutylaluminum-N,N-diethylamide, diisobutylaluminum-N,N-diisopropylylamide, diisobutylaluminum-N,N-diisobutylamide, dimethylaluminum-N,N-bis(trimethylsilyl)amide, diethylaluminum-N,N-bis(trimethylsilyl)amide, diisobutylaluminum-N,N-bis(trimethylsilyl)amide, diisobutylaluminum-N,N-bis(trimethylsilyl)amide, and derivatives thereof formed by ligand exchange with fluorophenyl substituted borane compounds.
- 4. A catalyst composition according to claim 1 wherein the molar ratio of metal complex to component b) is from 1:1 to 1:50.
- 5. A catalyst composition according to claim 1 wherein the activating cocatalyst comprises trispentafluorophenylborane, N-methyl-N,N-dioctadecylammonium tetrakis(pentafluorophenyl)borate, bis-hydrogenated tallowalkyl methylammonium tetrakis(pentafluorophenyl)borate, or the derivative resulting from ligand exchange between trispentafluorophenylborane and component b).
- 6. A process for polymerization of addition polymerizable monomers or mixtures thereof comprising contacting said monomer or mixture of monomers with a catalyst system comprising the catalyst composition of claim 1 under addition polymerization conditions.
- 7. The process of claim 6 wherein the addition polymerizable monomer is a C.sub.2-20 .alpha.-olefin or a mixture thereof.
- 8. The process of claim 7 wherein the molar ratio of metal complex to component b) is from 1:1 to 1:50 .
Parent Case Info
This application claims the benefit of U.S. Provisional Application No. 60/022,061 filed Jul. 23, 1996.
US Referenced Citations (27)
Foreign Referenced Citations (3)
| Number |
Date |
Country |
| 416815 |
Mar 1991 |
EPX |
| 514828 |
Nov 1992 |
EPX |
| 520732 |
Dec 1992 |
EPX |