Claims
- 1. A process for preparing a metal coordination complex of the formula: wherein(a) M is selected from the group consisting of titanium, zirconium, and hafnium; (b) Cp* is selected from the group consisting of cyclopentadienyl and R″m-substituted cyclopentadienyl, bound in an η5 bonding mode to M, wherein R″ is independently selected from the group consisting of alkyl of up to 20 carbon atoms and aryl of up to 20 carbon atoms and two adjacent R″ groups may join to form a ring and m is 1 to 4; (c) Z is selected from the group consisting of CR′2, CR′2CR′2, SiR′2, and SiR′2SiR′2, wherein each R′ is independently selected from the group consisting of alkyl of up to 20 carbon atoms, aryl of up to 20 carbon atoms, and mixtures thereof of up to 20 carbon atoms; (d) Y is NR or PR, wherein R is selected from the group consisting of alkyl of up to 20 carbon atoms, aryl of up to 20 carbon atoms, and mixtures thereof of up to 20 carbon atoms; (e) X is, independently each occurrence, selected from the group consisting of hydride, halide, alkyl of up to 30 carbon atoms, aryl of up to 30 carbon atoms, aryloxy of up to a total of 30 carbon and oxygen atoms, alkoxy of up to a total of 30 carbon and oxygen atoms, cyanide, aide, acetylacetonate, norbornyl, and benzyl; and (f) n is 2, said process comprising the steps of contacting a metal compound of the formula MXn+2, or a coordinated adduct thereof with a dianionic salt compound corresponding to the formula:(L+x)y(Cp*-Z-Y)−2 or ((LX″)+x)y(Cp*-Z-Y)−2 wherein: L is a metal of Group 1 or 2 of the Periodic Table of the Elements; X″ is floro, chloro, bromo, or iodo; x and y are either 1 or 2 and the product of x and y equals 2; M, X, Cp*, n, Z and Y are as previously defined, in a non-coordinating, non-polar solvent; and recovering the resulting product.
- 2. A process for preparing a metal coordination complex of the formula: wherein(a) M is selected from the group consisting of titanium, zirconium, and hafnium; (b) Cp* is selected from the group consisting of cyclopentadienyl and R″m-substituted cyclopentadienyl, bound in an η5 bonding mode to M, wherein R″ is independently selected from the group consisting of alkyl of up to 20 carbon atoms and aryl of up to 20 carbon atoms and two adjacent R″ groups may join to form a ring and m is 1 to 4; (c) Z is selected from the group consisting of CR′2, CR′2CR′2, SiR′2, and SiR′2SiR′2, wherein each R′ is independently selected from the group consisting of alkyl of up to 20 carbon atoms, aryl of up to 20 carbon atoms, and mixtures thereof of up to 20 carbon atoms; (d) Y is NR or PR, wherein R is selected from the group consisting of alkyl of up to 20 carbon atoms, aryl of up to 20 carbon atoms, and mixtures thereof of up to 20 carbon atoms; (e) X is, independently each occurrence, selected from the group consisting of hydride, halide, alkyl of up to 30 carbon atoms, aryl of up to 30 carbon atoms, aryloxy of up to a total of 30 carbon and oxygen atoms, alkoxy of up to a total of 30 carbon and oxygen atoms, cyanide, aide, acetylacetonate, norbornyl, and benzyl; and (f) n is 2, said process comprising the steps of contacting a metal compound of the formula MXn+1, or a coordinated adduct thereof with a dianionic salt compound corresponding to the formula:(L+x)y(Cp*-Z-Y)−2 or ((LX″)+x)y(Cp*-Z-Y)−2 wherein: L is a metal of Group 1 or 2 of the Periodic Table of the Elements; X″ is floro, chloro, bromo, or iodo; x and y are either 1 or 2 and the product of x and y equals 2; M, X, Cp*, n, Z and Y are as previously defined, in a non-coordinating, non-polar solvent; contacting the resulting product with a noninterfering oxidizing agent to raise the oxidation state of the metal, and recovering the resulting product.
- 3. The process of claims 2 wherein the noninterfering oxidizing agent is AgCl.
- 4. The process according to any one of claims 1-3 wherein the non-coordinating, non-polar solvent is toluene.
- 5. The process according to any one of claims 1-3 wherein M is titanium.
- 6. The process according to claim 4 wherein M is titanium.
CROSS REFERENCE TO RELATED APPLICATIONS
This is a Divisional of United States patent application Ser. No. 07/545,403, filed Jul. 3, 1990 which is a Continuation-in-part of the following United States patent applications: Ser. No. 08/401,345, filed Aug. 31, 1989, now abandoned; Ser. No. 07/401,344, filed Aug. 31, 1989, now abandoned, Ser. No. 07/428,082, filed Oct. 27, 1989, now abandoned; Ser. No. 07/428,283, filed Oct. 27, 1989 now abandoned; Ser. No. 07/428,276, filed Oct. 27,1989, now abandoned; Ser. No. 07/520,168 filed Apr. 9, 1990, now abandoned, and Ser. No. 07/436,524, filed Nov. 14, 1989, now abandoned.
US Referenced Citations (15)
Foreign Referenced Citations (6)
Number |
Date |
Country |
200351 |
Nov 1986 |
EP |
273654 |
Jul 1988 |
EP |
277003 |
Aug 1988 |
EP |
277004 |
Aug 1988 |
EP |
87 03887 |
Jul 1987 |
WO |
91 02012 |
Feb 1991 |
WO |
Non-Patent Literature Citations (8)
Entry |
Hafnium-Organische Verbindungen (cited in EPO search report). |
Zirkonium-Organische Verbindungen (cited in EPO search report). |
Chem. Ber. (123) 1649-1651 (1990) (cited in EPO search report). |
CA 97:182911 (1982) (high molecular weight α-olefin polymers). |
CA 107:7809g (1987) (high molecular weight α-olefin polymers). |
Z. Lin et al., J.A.C.S., 109, 4127-4129 (1987) (ammonium salt cocatlayst). |
G. Htalky et al., J.A.C.S., 111, 2728-2729 (1989) (Lewis Acid cocatalyst—carboranes). |
Bercaw, Third Chemical Congress of North America, Jun. 1988 (Talk) (believed to be substantially same as Bercaw, et al. Contribution 7928, JACS, 1989). |
Continuation in Parts (7)
|
Number |
Date |
Country |
Parent |
07/520168 |
May 1990 |
US |
Child |
07/545403 |
|
US |
Parent |
07/436524 |
Nov 1989 |
US |
Child |
07/520168 |
|
US |
Parent |
07/428082 |
Oct 1989 |
US |
Child |
07/436524 |
|
US |
Parent |
07/428283 |
Oct 1989 |
US |
Child |
07/428082 |
|
US |
Parent |
07/428276 |
Oct 1989 |
US |
Child |
07/428283 |
|
US |
Parent |
07/401345 |
Aug 1989 |
US |
Child |
07/428276 |
|
US |
Parent |
07/401344 |
Aug 1989 |
US |
Child |
07/401345 |
|
US |