Claims
- 1. A process for making a metallocene compound comprising adding:a) a compound of the formula MeQp+2; b) a silicon hydrocarbyl compound; and c) a substituted cyclopentadiene of the formula (C5R′m), to form a compound of the formula: R″(C5R′m)2MeQp wherein R′ is hydrogen and (C5R′m) is cyclopentadienyl or R′ is hydrogen or a hydrocarbyl radical having from 1-20 carbon atom is, each R′ being the same or different and (C5R′m) is substituted cyclopentadienyl; R″ is a silicon hydrocarbyl radical and acts as an interannular bridge between the two (C5R′m) rings; Q is a hydrocarbon radical chosen from the group consisting of an aryl, alkyl alkenyl, alkylaryl and arylalkyl radical having 1-20 carbon atoms or is a halogen; Me is a group 4b, 5b, or 6b metal as designated in the Periodic Table of Elements; 0≦m≦4; and 0≦p≦3, provided that when all R's are hydrogen, m does not equal 4.
- 2. A process as in claim 1 wherein Me is titanium, zirconium or hafnium.
- 3. A process as in claim 1 wherein Me is zirconium.
- 4. A process as in claim 1 wherein R″ is an alkyl silyl or cycloalkyl silyl radical.
- 5. A process as in claim 4 wherein R″ is a dimethyl silicon radical.
- 6. A process as in claim 4 wherein R″ is a cyclopropyl silicon radical.
- 7. A process as in claim 1 wherein C5R′m is indenyl.
- 8. A process as in claim 1 wherein Q is a halogen and p is 2.
- 9. A process as in claim 1 wherein the metallocene compound is dimethylsilylbis(indenyl)zirconium dichloride.
- 10. A process as in claim 1 wherein the metallocene compound is cyclopropylsilylbis(indenyl)zirconium dichloride.
- 11. A process as in claim 1 wherein Q is chlorine.
- 12. A process for making a metallocene catalyst comprising adding:a) a compound of the formula MeQp+2; b) a silicon hydrocarbyl compound; c) a substituted cyclopentadiene of the formula (C5R′m), to form a metallocene compound of the formula: R″(C5R′m)2MeQp wherein R′ is hydrogen and (C5R′m) is cyclopentadienyl or R′ is hydrogen or a hydrocarbyl radical having from 1-20 carbon atoms, each R′ being the same or different and (C5R′m) is substituted cyclopentadienyl; R″ is a silicon hydrocarbyl radical and acts as an interannular bridge between the two (C5R′m) rings; Q is a hydrocarbon radical chosen from the group consisting of an aryl, alkyl, alkenyl, alkylaryl and arylalkyl radical having 1-20 carbon atoms or is a halogen; Me is a group 4b, 5b, or 6b metal as designated in the Periodic Table of Elements; 0≦m≦4; and 0≦p≦3; and d) an organoaluminum compound.
- 13. A process as in claim 12 wherein the organoaluminum compound is alumoxane represented by the formula:(R—Al—O)n orR(R—Al—O)nAlR2 wherein R is an alkyl group with 1-5 carbons and n is an integer from 1 to 20.
- 14. A process as in claim 12 wherein Me is titanium, zirconium or hafnium.
- 15. A process as in claim 12 wherein Me is zirconium.
- 16. A process as in claim 12 wherein R″ is an alkyl silyl or cycloalkyl silyl radical.
- 17. A process as in claim 16 wherein R″ is dimethyl silicon radical.
- 18. A process as in claim 16 wherein R″ is cyclopropyl silicon radical.
- 19. A process as in claim 12 wherein C5R′m is indenyl.
- 20. A process as in claim 12 wherein Q is a halogen and p is 2.
- 21. A process as in claim 12 wherein the metallocene compound is dimethylsilylbis(indenyl)zirconium dichloride.
- 22. A process as in claim 12 wherein the metallocene compound is cyclopropylsilylbis(indenyl)zirconium dichloride.
- 23. A process as in claim 1 wherein Q is chlorine.
- 24. The process of claim 1 wherein a first R′ is a phenyl group wherein (C5R′m) forms a substituted indenyl group.
- 25. The process of claim 24 wherein a second R′, a third R′ and a fourth R′ may be the same or different hydrocarbyl radicals having from 1-20 carbon atoms each and wherein one or more of such second R′, third R′ and fourth R′ may substitute on the indenyl group.
- 26. The process of claim 25 wherein the hydrocarbyl radicals are further defined as the same or different linear, branched or cyclo hydrocarbyl radicals.
- 27. The process of claim 26 wherein the hydrocarbyl radicals are selected from a group consisting of methyl, ethyl, propyl, butyl, amyl, isoamy), hexyl, isobuty), heptyl, octyl, nonyl, decyl, cetyl, cyclohexyl and phenyl.
- 28. The process of claim 24 wherein R″ is a dimethyl silyl group.
- 29. The process of claim 12 wherein a first R′ is a phenyl group wherein (C5R′m) forms a substituted indenyl group.
- 30. The process of claim 29 wherein a second R′, a third R′ and a fourth R′ may be the same or different hydrocarbyl radicals having from 1-20 carbon atoms each and wherein one or more of such second R′, third R′ and fourth R′ may substitute on the indenyl group.
- 31. The process of claim 30 wherein the hydrocarbyl radicals are further defined as the same or different linear, branched or cyclo hydrocarbyl radicals.
- 32. The process of claim 31 wherein the hydrocarbyl radicals are selected from a group consisting of methyl, ethyl, propyl, butyl aural, isoarnyl, hexyl, isobutyl, heptyl, octyl, nonyl, decyl, cetyl, cyclohexyl and phenyl.
- 33. The process of claim 29 wherein R″ is a dimethyl silyl group.
Parent Case Info
This is a continuation of copending prior U.S. application Ser. No. 08/812,364, filed Mar. 5, 1997, issued as U.S. Pat. No. 6,117,957, which is a continuation of prior U.S. application Ser. No. 07/696,408, filed May 6, 1991, issued as U.S. Pat. No. 5,846,896 on Dec. 8, 1998, which was a continuation of prior U.S. application Ser. No. 07/317,089, filed Feb. 28, 1989, now abandoned, which was a continuation of prior U.S. application Ser. No. 07/034,472, filed Apr. 3, 1987, now abandoned.
US Referenced Citations (13)
Foreign Referenced Citations (2)
Number |
Date |
Country |
0128046 |
Jun 1984 |
EP |
0129368 |
Jun 1984 |
EP |
Non-Patent Literature Citations (7)
Entry |
“Olefinpolymerization with Highly Active Soluble Zirconium Compounds Using Aluminoxane as Co-Catalyst”, W. Kaminsky, Makromol. Chem., Symp. 3, p. 377-387 (1986). |
“Mechanisms of Stereochemical Control in Propylene Polymerizaations with Soluble Grop 4B Metallocene/Methylalumoxane Catalysts”, John A. Ewen, J. Am. Chem. Soc. 106, p. 6355-6364 (1984). |
“Synthesis and Crystal Structure of a Chiral ansa-Zirconocene Derivative with Ethylene-Bridged Tetrahydroindenyl Ligands”, F.R.W.P. Wild, et al., Journal of Organometallic Chemistry, 288, p. 63-67 (1985). |
“Polymerization Behavior of Soluble Ring-Substituted Zirconocene (IV) Dichlorides and Methyl Alumoxanes as Well as Other Cocatalysts with Respect to 1-Olefins”, K. Kulper, Dissertation, Hamburg University (1985). |
“Preparation of Special Polyolefins from Soluble Zirconium Compounds with Aluminoxane as Cocatalyst”, W. Kaminsky, Elsevier (1986). |
“Ligand Effects on Metallocene Catalyzed Ziegler-Natta Polymerizations”, John A. Ewen, Stud. Surf. Sci. Catal., 25, p. 271-292 (1986). |
“Stereoselektive Polymerisation von Olefinen mit homogenen, chiralen Ziegler-Natta-Katalysatoran”, W. Kaminsky, Die Angewandte Makromolekulare Chemie 145/146, p. 149-160 (1986). |
Continuations (4)
|
Number |
Date |
Country |
Parent |
08/812364 |
Mar 1997 |
US |
Child |
09/574339 |
|
US |
Parent |
07/696408 |
May 1991 |
US |
Child |
08/812364 |
|
US |
Parent |
07/317089 |
Feb 1989 |
US |
Child |
07/696408 |
|
US |
Parent |
07/034472 |
Apr 1987 |
US |
Child |
07/317089 |
|
US |