Claims
- 1. In a method of polymerization of one or more alpha olefin monomer(s) to produce polymers thereof in a polymerization system including presence of a catalyst system, the improvement comprising the steps of:
(a) polymerizing at least one of said monomers in the presence of a catalyst system comprising an unbridged fluxional metallocene and a cocatalyst; and (b) introducing ethylene into said polymerization system in amounts sufficient to induce a Polymerization Rate Enhancement Effect in said fluxional catalyst system.
- 2. A polymerization process as in claim 1 wherein said resulting polymer is elastomeric.
- 3. A polymerization process as in claim 2 wherein said ethylene is incorporated in the resulting polymer in amounts not substantially altering significant elastomeric properties of the polymer.
- 4. A polymerization process as in claim 2 wherein said resulting polymer has a melting point not significantly lowered by said introduction of ethylene therein.
- 5. A polymerization process as in claim 1 wherein the resulting polymer has a higher molecular weight than produced during polymerization in the absence of ethylene.
- 6. A polymerization process as in claim 1 wherein said amount of ethylene is continuously introduced during said polymerization.
- 7. A polymerization process as in claim 2 wherein said resulting polymer elastomer has a melting point above about 80° C.
- 8. A polymerization process as in claim 1 wherein said resulting polymer has a melting point within about 40° below a corresponding polymer produced without said ethylene.
- 9. A polymerization process as in claim 7 wherein the metallocene component of said catalyst system is a transition metal selected from a Group 3, 4 or 5 Transition Metal, a Lanthanide and an Actinide metallocene.
- 10. A polymerization process as in claim 9 wherein said transition metal is selected from Ti, Hf, V and Zr.
- 11. A polymerization process as in claim 10 wherein said unbridged metallocene includes ligands selected from mononuclear or polynuclear hydrocarbyl or silahydrocarbyl.
- 12. A polymerization process as in claim 11 wherein said ligands include at least one cyclopentadienyl or substituted cyclopentadienyl ring.
- 13. A polymerization process as in claim 12 wherein said fluxional metallocene is a substituted or unsubstituted 2-aryl indenyl metallocene.
- 14. A polymerization process as in claim 12 wherein said substituted cyclopentadienyl has the general formula:
- 15. A polymerization process as in claim 3 wherein said resulting polymer has below about 10% by weight ethylene units.
- 16. In a method of polymerization of at least one olefin monomer to produce polymers in a polymerization system employing a catalyst system, the improvement comprising:
a) conducting polymerization in the presence of an unbridged fluxional metallocene catalyst system; b) introducing into said polymerization system ethylene monomer in an amount sufficient to induce a Polymerization Rate-Enhancement Effect and produce resulting elastomeric α-olefin polymers, which have a minor amount of ethylene units and melting points about 80° C.
- 17. Method as in claim 16 wherein said fluxional catalyst system in the absence of said ethylene amount produces non-elastomeric olefin polymers.
- 18. A polymerization process as in claim 17 wherein the metallocene component of said catalyst system is a transition metal selected from a Group 3, 4 or 5 Transition Metal, a Lanthanide and an Actinide metallocene.
- 19. A polymerization process as in claim 18 wherein said unbridged metallocene includes ligands selected from mononuclear or polynuclear hydrocarbyl or silahydrocarbyl.
- 20. A polymerization process as in claim 19 wherein said ligands include at least one cyclopentadienyl or substituted cyclopentadienyl ring.
- 21. A polymerization process as in claim 20 wherein said fluxional metallocene is a substituted or unsubstituted 2-aryl indenyl metallocene.
- 22. A polymerization process as in claim 19 wherein said substituted cyclopentadienyl has the general formula:
- 23. A polymerization process as in claim 17 wherein said resulting polymer has below about 10% by weight ethylene units.
- 24. A cyclopentadienyl metallocene catalyst system component for polymerization of olefins which include at least one ligand of the formula:
- 25. A polymerization process as in claim 24 wherein the metallocene component of said catalyst system is a transition metal selected from a Group 3, 4 or 5 Transition Metal, a Lanthanide and an Actinide metallocene.
- 26. A polymerization process as in claim 25 wherein said transition metal is selected from Ti, Hf, V and Zr.
- 27. A polymerization process as in claim 26 wherein said unbridged metallocene includes ligands selected from mononuclear or polynuclear hydrocarbyl or silahydrocarbyl.
- 28. A polymerization process as in claim 27 wherein said ligands include at least one cyclopentadienyl or substituted cyclopentadienyl ring.
- 29. A catalyst as in claim 28 wherein said substituted or unsubstituted cyclopentadienyl ligand is selected from 1-methyl-2-phenylindenyl, 1-methyl-2-phenyl indenyl, 2-(3,5-bis-tertbutylphenyl)indenyl, 2-(3,5-bis-trimethylsilylphenyl) indenyl, (pentamethylcyclopentadienyl) (1-methyl-2-phenylindenyl), (pentamethylcyclopentadienyl) (2-phenylindenyl), (pentamethylcyclopentadienyl) (1-methyl-2-phenylindenyl), (pentamethylcyclopentadienyl) (2-phenylindenyl), (cyclopentadienyl) (1-methyl-2-phenylindenyl), (cyclopentadienyl) (2-phenylindenyl), (cyclopentadienyl) (1-methyl-2-phenylindenyl), (cyclopentadienyl) (2-phenylindenyl).
- 30. An elastomeric polymer of at least one alpha olefin monomer with ethylene having less than about 10 wt. % ethelene units and a melting point, TM, above about 80° C.
- 31. An elastomeric copolymer as in claim 30 wherein said ethylene content is less than about 5 wt. %.
- 32. An elastomeric copolymer as in claim 31 wherein said ethylene content is less than about 2 wt. %.
- 33. An elastomeric copolymer as in claim 30 wherein said Tm is above about 100° C.
- 34. An elastomeric copolymer as in claim 31 wherein said Tm is above about 100° C.
- 35. An elastomeric copolymer as in claim 32 wherein said Tm is above about 100° C.
- 36. An elastomeric copolymer as in claim 30 wherein said Tm is above about 120° C.
- 37. An elastomeric copolymer as in claim 31 wherein said Tm is above about 120° C.
- 38. An elastomeric copolymer as in claim 32 wherein said Tm is above about 120° C.
- 39. An elastomeric copolymer as in claim 30 said ethylene is randomly inserted in said polymer between alpha olefin units.
- 40. An elastomeric copolymer as in claim 31 said ethylene is randomly inserted in said polymer between alpha olefin units.
- 41. An elastomeric copolymer as in claim 32 said ethylene is randomly inserted in said polymer between alpha olefin units.
- 42. A flexible thermoplastic α-olefin homo or copolymer having the properties of high elongation in excess of about 500%, a tensile modulus of below about 100 MPa and substantially no retained force.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This is a Regular Application arising from: Provisional Application Ser. No. 60/054,335 filed Jun. 14, 1997, entitled “Propylene Polymerization With Chiral and Achiral Unbridged 2-Aryl Indene Metallocenes” (011 PROV); Provisional Application Ser. No. 60/050,393 filed Jun. 19, 1997 entitled “Catalysts and EEF Process For The Synthesis of Elastomeric Olefin Polymers” (010 PROV); Provisional Application Ser. No. 60/050,105 filed Jun. 20, 1997, entitled “Thermoplastic Elastomeric α-Olefin Homo- and Co-Polymers, Methods and Fluxional Metallocene Catalysts Therefor (009 PROV); and Provisional Application Ser. No. 60/071,050 filed Jan. 9, 1998, entitled “Catalyst and Process For The Synthesis of Olefin Block Copolymers” (013 PROV) the disclosures of each of which is hereby incorporated by reference and the benefit of the priority of each of which is hereby claimed under 35 USC §119.
Provisional Applications (4)
|
Number |
Date |
Country |
|
60054335 |
Jun 1997 |
US |
|
60050393 |
Jun 1997 |
US |
|
60050105 |
Jun 1997 |
US |
|
60071050 |
Jan 1998 |
US |
Divisions (2)
|
Number |
Date |
Country |
Parent |
09669411 |
Sep 2000 |
US |
Child |
10392088 |
Mar 2003 |
US |
Parent |
09097234 |
Jun 1998 |
US |
Child |
09669411 |
Sep 2000 |
US |