Claims
- 1. A process for preparing a metal complex corresponding to the formula: ##STR12## wherein, M is titanium or zirconium in the +2 formal oxidation state;
- Z is an anionic group containing a cyclic group comprising delocalized, .pi.-electrons through which the group is bound to M, said Z group also being bound to Z' through a covalent bond, a dative bond or a divalent bridging group, said Z group having up to 60 atoms other than hydrogen;
- Z' is a second Z group or a moiety bound to M via a covalent or dative bond comprising boron, or a member of Group 14 of the Periodic Table of the Elements, and also comprising nitrogen, phosphorus, sulfur or oxygen, said Z' group having up to 60 atoms other than hydrogen;
- D is a neutral, conjugated diene, optionally substituted with one or more hydrocarbyl groups, said X having up to 40 carbon atoms;
- X' is a neutral Lewis base ligand selected from amines, phosphines and ethers said X' having from 3 to 20 non-hydrogen atoms; and
- n is a number from 0 to 3;
- said process comprising contacting a metal complex according to the formula: ##STR13## wherein, M* is titanium or zirconium in the +3 formal oxidation state;
- M** is titanium or zirconium in the +4 formal oxidation state;
- X* is halide or C.sub.1-20 hydrocarblyloxide; and
- Z, Z', X' and n are as previously defined;
- with a free diene corresponding to D, and subsequently or simultaneously contacting the resulting reaction mixture with a di(C.sub.1-20 alkyl) magnesium compound to form the desired metal complex.
- 2. A process according to claim 1 wherein the free diene corresponding to D is 1,4-diphenyl-1,3-butadiene; 1,3-pentadiene; 1,4-dibenzyl-1,3-butadiene; 2,4-hexadiene; 3-methyl-1,3-pentadiene; 1,4-ditolyl-1,3-butadiene; or 1,4-bis(trimethylsilyl)-1,3-butadiene.
- 3. A process according to claim 1 wherein the resulting metal complex corresponds to the formula: ##STR14## wherein: R' each occurrence is independently selected from hydrogen, amino, hydrocarbyl, silyl, germyl, halo, cyano, and combinations thereof, said R' having up to 20 nonhydrogen atoms, and optionally, one or two pairs of such substituents together each form a C.sub.2-10 hydrocarbylene group, thereby causing Cp to have a fused ring structure;
- D is a neutral, conjugated diene group having up to 30 non-hydrogen atoms, which forms a .pi.-complex with M;
- Y is --O--, --S--, --NR*--, --PR*--;
- M is titanium or zirconium in the +2 formal oxidation state;
- Z* is SiR*.sub.2, CR*.sub.2, SiR*.sub.2 SiR*.sub.2, CR*.sub.2 CR*.sub.2, CR*.dbd.CR*, CR*.sub.2 SiR*.sub.2, or GeR*.sub.2 ;
- wherein:
- R* each occurrence is independently hydrogen, or a member selected from hydrocarbyl, silyl, or halohydrocarbyl, said R* having up to 10 non-hydrogen atoms.
- 4. A process according to claim 3 wherein R' independently each occurrence is hydrogen, hydrocarbyl, silyl, amino, or halohydrocarbyl, said R' having up to 20 non-hydrogen atoms, or one or two pairs of adjacent R' substituents together each form a C.sub.2-20 hydrocarbylene group, thereby causing Cp to have a fused ring structure.
- 5. A process according to claim 4 wherein R' is hydrogen, methyl, ethyl, propyl, butyl, pentyl, hexyl, (including where appropriate all isomers), cyclopentyl, cyclohexyl, norbornyl, benzyl, or phenyl or one or two pairs of adjacent R' substituents together cause the entire C.sub.5 R'.sub.4 group to be an indenyl, tetrahydroindenyl, fluorenyl, tetrahydrofluorenyl, octahydrofluorenyl, s-indacenyl, or cyclopentaphen(/)anthrenyl group.
- 6. A process according to claim 5 wherein Y is a nitrogen or phosphorus containing group corresponding to the formula --N(R")-- or --P(R")--, wherein R" is C.sub.1-10 hydrocarbyl.
- 7. A process according to claim 1 wherein each hydrocarbyl group of the di(C.sub.1-20 hydrocarbyl) magnesium compound is n-alkyl.
CROSS-REFERENCE TO RELATED APPLICATION
This application claims benefit of priority from provisional application 60/106,162, filed Oct. 29, 1998, now abandoned.
US Referenced Citations (3)
Number |
Name |
Date |
Kind |
5470993 |
Devore et al. |
Nov 1995 |
|
5486632 |
Devore et al. |
Jan 1996 |
|
5616748 |
Newman |
Apr 1997 |
|