Claims
- 1. A polymerization process employing a metal complex having two seven-member metallocycles, wherein each metallocycle includes four atoms from a bis-aromatic moiety and is formed with bonds from the metal atom to at least 2 heteroatoms, and wherein said two seven-member metallocycles are joined together by at least one bridging group and wherein the metal in said metal complex is selected from the group consisting of groups 3-6 and Lanthanide elements of the Periodic Table of Elements; and optionally at least one activator.
- 2. The process of claim 1, wherein said two, bridged seven-member metallocycles are compositionally identical.
- 3. The process of claim 2, wherein each of said metallocycles includes four atoms from a bis-aryl moiety.
- 4. A polymerization process employing a metal complex characterized by the general formula:
- 5. The process of claim 4, wherein each L is independently selected from the group consisting of halide, alkyl, substituted alkyl, cycloalkyl, substituted cycloalkyl, heteroalkyl, substituted heteroalkyl heterocycloalkyl, substituted heterocycloalkyl, aryl, substituted aryl, heteroaryl, substituted heteroaryl, alkoxy, aryloxy, boryl, silyl, amino, amine, hydrido, allyl, diene, phosphino, phosphine, carboxylates, alkylthio, arylthio, thioxy, 1,3-dionates, oxalates, carbonates, nitrates, sulphates, and combinations thereof.
- 6. The composition of claim 4, wherein at least one L is an anion.
- 7. A polymerization process employing a metal complex characterized by either of the general formulas:
- 8. The process of claim 7 wherein the complex is characterized by the general formula:
- 9. The process of claim 8 wherein each of R1, R2, R3, R4, R5, R6, R7, R8, R9, R10, R11, R12, R13, R14, R15, R16, R17, R18, R19, and R20 is independently selected from the group consisting of hydride, halide, and optionally substituted alkyl, heteroalkyl, aryl, heteroaryl, alkoxyl, aryloxyl, silyl, boryl, phosphino, amino, alkylthio, arylthio, thioxy, seleno, nitro, and combinations thereof.
- 10. The process of claim 9, wherein each of R1, R2, R3, R4, R5, R6, R7, R8, R9, R10, R11, R12, R13, R14, R15, R16, R17, R18, R19, and R20 is independently selected from the group consisting of hydride, halide, and optionally substituted alkyl, heteroalkyl, aryl, heteroaryl, alkoxyl, aryloxyl, silyl, amino, alkylthio, arylthio and thioxy.
- 11. The process of claim 8 wherein the complex is characterized by the general formula:
- 12. The process of claim 11, wherein the complex is characterized by the formula:
- 13. The process of either of claims 8, 9, 10, 11, or 12, wherein at least one of R2 and R12 is not hydrogen.
- 14. The composition of claim 13, wherein R2 and R12 are independently selected from the group consisting of optionally substituted aryl and heteroaryl.
- 15. The process of either of claims 8, 9, 10, 11, or 12, wherein the bridging group B is selected from the group consisting of optionally substituted divalent hydrocarbyl and divalent heteroatom containing hydrocarbyl.
- 16. The process of claim 15, wherein B is selected from the group consisting of optionally substituted divalent alkyl, alkenyl, alkynyl, heteroalkyl, heteroalkenyl, heteroalkynyl, aryl, heteroaryl and silyl.
- 17. The process of claim 15, wherein B is represented by the general formula —(Q″R402-z″)z′— wherein each Q″ is either carbon or silicon and each R40 may be the same or different from the others such that each R40 is selected from the group consisting of hydride and optionally substituted hydrocarbyl, and optionally two or more R40 groups may be joined into a ring structure having from 3 to 50 atoms in the ring structure not counting hydrogen atoms; z′ is an integer from 1 to 10; and z″ is 0, 1 or 2.
- 18. The process either of claims 8, 9, 10, 11, or 12, wherein each L is independently selected from the group consisting of halide, alkyl, substituted alkyl, cycloalkyl, substituted cycloalkyl, heteroalkyl, substituted heteroalkyl heterocycloalkyl, substituted heterocycloalkyl, aryl, substituted aryl, heteroaryl, substituted heteroaryl, alkoxy, aryloxy, boryl, silyl, amino, amine, hydrido, allyl, diene, phosphino, phosphine, carboxylates, alkylthio, arylthio, thioxy, 1,3-dionates, oxalates, carbonates, nitrates, sulphates, and combinations thereof.
- 19. The process of either of claims 8, 9, 10, 11, or 12, wherein at least one L is an anion.
- 20. The process of either of claims 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, or 12 wherein M is selected from the group consisting of Hf, Zr and Ti.
- 21. The process of either of claims 1, 4 or 7 wherein said at least one activator is present and comprises an ion forming activator and, optionally, a group 13 reagent.
- 22. The process of either of claims 1, 4 or 7, wherein said process comprises polymerizing at least one alpha-olefin, under polymerization conditions to sufficient to form a stereoregular polymer.
- 23. The process of claim 22, wherein said at least one alpha-olefin comprises propylene.
- 24. The process of claim 23, wherein said process is a solution process operated under polymerization conditions that comprise a temperature of at least 100° C.
- 25. The process of claim 24, wherein said stereoregular polymer contains no regioerrors detectible by carbon 13 nuclear magnetic resonance spectroscopy.
- 26. The process of either of claims 1, 4 or 7 wherein said process comprises providing a reactor with at least one polymerizable monomer and providing a catalyst to said reactor, wherein said catalyst is made from said complex and subjecting said reactor contents to polymerization conditions.
- 27. The process of claim 26 wherein said at least one monomer is an olefin, diolefin or unsaturated compound or a combination thereof.
- 28. The process of claim 27, wherein said process uses at least 2 monomers that are ethylene and an α-olefin.
- 29. The process of claim 28 wherein the α-olefin is selected from the group consisting of optionally substituted styrene.
- 30. The process of claim 26, wherein said at least monomer is selected from the group consisting of ethylene, propylene, di-olefins and combinations thereof.
- 31. A polymerization process, comprising polymerizing at least one polymerizable monomer under polymerization conditions, wherein said processes uses a composition comprising:
(1) a ligand characterized by one of the following general formula: 102 wherein each ligand has at least two hydrogen atoms capable of removal in a binding reaction with a metal atom or metal precursor or base; AR is an aromatic group that can be the same or different from the other AR groups with each AR being independently selected from the group consisting of optionally substituted aryl or heteroaryl; B is a bridging group having from one to 50 atoms not counting hydrogen atoms; X and X′ are the same or different and are independently selected from the group consisting of oxygen, sulfur, —NR30—, —PR30—, where R30 is selected from the group consisting of hydride, halide, and optionally substituted hydrocarbyl, heteroatom-containing hydrocarbyl, silyl, boryl, alkoxy, aryloxy and combinations thereof, X″ and X′″ are the same or different and are independently selected from the group consisting of optionally substituted amino, phosphino, hydroxy, alkoxy, aryloxy, alkylthio, arylthio and thioxy; Y and Y′ are the same or different and are independently selected from the group consisting of optionally substituted amino, phosphino, hydroxy, alkoxy, aryloxy, alkylthio, arylthio and thioxy; and when the AR group attached to the bridge is an optionally substituted heteroaryl, X and/or X′ can be part of the aromatic ring; (2) a metal precursor compound characterized by the general formula M(L)n where M is a metal selected from groups 3-6 and Lanthanide elements of the Periodic Table of Elements, each L is a moiety that forms a covalent, dative or ionic bond with M; n is 1, 2, 3, 4, 5, or 6; and (3) optionally, at least one activator.
- 32. The process of claim 31 wherein at least one AR is a heteroaryl.
- 33. The process of claim 31, wherein the ligand is characterized by the general formula:
- 34. The process of claim 33, wherein the ligand is characterized by the formula:
- 35. The process of claim 34, wherein the ligand is characterized by the formula:
- 36. The process of either of claims 33, 34, or 35, wherein at least one of R2 and R12 is not hydrogen.
- 37. The process of claim 36, wherein R2 and R12 are independently selected from the group consisting of optionally substituted aryl and heteroaryl
- 38. The process of of either of claims 31, 32, 33, 34, or 35 wherein M is selected from the group consisting of Hf, Zr and Ti.
Parent Case Info
[0001] This application claims the benefit of U.S. Provisional Application No. 60/375,363 filed on Apr. 24, 2002, which is incorporated herein by reference for all purposes.
Provisional Applications (1)
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Number |
Date |
Country |
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60375363 |
Apr 2002 |
US |