Claims
- 1. A complex having a reactivity at temperatures of greater than 80° C. to produce ethylene polymers comprising a Group 4 metal complex of the formula: wherein M is selected from the group consisting of Ti, Zr, and Hf; n is 1 or 2; Cp is a monocyclopentadienyl ligand which is unsubstituted or substituted by up to five substituents independently selected from the group consisting of a C1-10 hydrocarbyl radicals or two hydrocarbyl radicals taken together may form a ring which hydrocarbyl substituents or cyclopentadienyl radical are unsubstituted or further substituted by a halogen atom, a C1-8 alkyl radical, C1-8 alkoxy radical, a C6-10 aryl or aryloxy radical; an amido radical which is unsubstituted or substituted by up to two C1-8 alkyl radicals; a phosphido radical which is unsubstituted or substituted by up to two C1-8 alkyl radicals; silyl radicals of the formula —Si—(R2)3 wherein each R2 is independently selected from the group consisting of hydrogen, a C1-8 alkyl or alkoxy radical, C6-10 aryl or aryloxy radicals; germanyl radicals of the formula Ge—(R2)3 wherein R2 is as defined above; each R1 is independently selected from the group consisting of a hydrogen atom, a halogen atom, C1-10 hydrocarbyl radicals which are unsubstituted by or further substituted by a halogen atom, a C1-8 alkyl radical, C1-8 alkoxy radical, a C6-10 aryl or aryloxy radical, a silyl radical of the formula —Si—(R2)3 wherein each R2 is independently selected from the group consisting of hydrogen, a C1-8 alkyl or alkoxy radical, C6-10 aryl or aryloxy radicals, germanyl radical of the formula Ge—(R2)3 wherein R2 is as defined above or two R1 radicals taken together may form a bidentate C1-10 hydrocarbyl radical, which is unsubstituted by or further substituted by a halogen atom, a C1-8 alkyl radical, C1-8 alkoxy radical, a C6-10 aryl or aryloxy radical, a silyl radical of the formula —Si—(R2)3 wherein each R2 is independently selected from the group consisting of hydrogen, a C1-8 alkyl or alkoxy radical, C6-10 aryl or aryloxy radicals, germanyl radicals of the formula Ge—(R2)3 wherein R2 is as defined above, provided that R1 individually or two R1 radicals taken together may not form a Cp ligand as defined above; each L1 is independently selected from the group consisting of a hydrogen atom, of a halogen atom, a C1-10 hydrocarbyl radical a C1-10 alkoxy radical, a C5-10 aryl oxide radical, each of which said hydrocarbyl, alkoxy, and aryl oxide radicals may be unsubstituted by or further substituted by a halogen atom, a C1-8 alkyl radical, C1-8 alkoxy radical, a C6-10 aryl or aryl oxy radical, an amido radical which is unsubstituted or substituted by up to two C1-8 alkyl radicals; a phosphido radical which is unsubstituted or substituted by up to two C1-8 alkyl radicals, provided that L1 may not be a Cp radical as defined above; and an activator.
- 2. The complex according to claim 1, wherein in the Group 4 metal complex R1 is selected from the group consisting of a hydrogen atom, a chlorine atom, a C1-4 alkyl radical, a C1-4 alkoxy radical, a silyl radical of the formula —Si—(R2)3 wherein each R2 is independently selected from the group consisting of a hydrogen atom and a C1-4 alkyl radical; a germanyl radical of the formula —Ge—(R2)3 wherein each R2 is independently selected from the group consisting of a hydrogen atom and a C1-4 alkyl radical.
- 3. The complex according to claim 2, wherein in the Group 4 metal complex each L1 is independently selected from the group consisting of a hydrogen atom, a chlorine atom, a C1-6 alkyl radical, a C1-6 alkoxy radical, and a C6-10 aryl oxide radical.
- 4. The complex according to claim 3, wherein in the Group 4 metal complex Cp is unsubstituted or substituted by up to five substituents selected from the group consisting of C1-6 hydrocarbyl radicals or two hydrocarbyl radicals taken together may form a bridging ring, which cyclopentadienyl radical and substituents may be further substituted by a substituent selected from the group consisting of a fluorine atom, a chlorine atom, an amido radical which is unsubstituted or substituted by up to two C1-4 alkyl radicals, a phosphido radical which is unsubstituted or substituted by up to two C1-4 alkyl radicals, a silyl radical of the formula —Si—(R2)3 wherein each R2 is independently selected from the group consisting of a hydrogen atom and a C1-4 alkyl radical; a germanyl radical of the formula —Ge—(R2)3 wherein each R2 is independently selected from the group consisting of a hydrogen atom and a C1-4 alkyl radical.
- 5. The complex according to claim 4, wherein said activator is an aluminoxane of the formula R42AlO(R4AlO)mAlR42 wherein each R4 is independently selected from the group consisting of C1-20 hydrocarbyl radicals and m is from 0 to 50 and is present in an amount to provide a molar ratio of aluminum to Group 4 metal from 50:1 to 1000:1.
- 6. The complex according to claim 5, wherein in said aluminoxane each R4 is independently selected from the group consisting of C1-4 alkyl radicals and m is from 5 to 30.
- 7. The complex according to claim 4 wherein said activator comprises:1. an alkylating activator selected from the group consisting of consisting of (R3)pMgX2−p wherein X is a halide and each R3 is independently selected from the group consisting of C1-10 alkyl radicals and p is 1 or 2; R3Li wherein in R3 is a defined above, (R3)qZnX2−q wherein R3 is as defined above, X is halogen and q is 1 or 2; (R3)sAlX3−s wherein R3 is as defined above, X is halogen and s is an integer from 1 to 3; and 2. an activator capable of ionizing the Group 4 metal complex is selected from the group consisting of: (i) compounds of the form [R5]+[B(R7)4]− wherein R5 is a cyclic C5-7 aromatic cation or a triphenyl methyl anion and each R7 is independently selected from the group consisting of phenyl radicals which are unsubstituted or substituted with from 3 to 5 substituents selected from the group consisting of a fluorine atom, a C1-4 alkyl or alkoxy radical which is unsubstituted or substituted by a fluorine atom; and a silyl radical of the formula —Si—(R9)3; wherein each R9 is independently selected from the group consisting of a hydrogen atom and a C1-4 alkyl radical; and (ii) compounds of the formula [(R8)tZH]+[B(R7)4]− wherein H is a hydrogen atom, Z is a nitrogen atom or phosphorus atom, t is 2 or 3 is Z is nitrogen or phosphorus and R8 is selected from the group consisting of C1-8 alkyl radicals, a phenyl radical which is unsubstituted or substituted by up to three C1-4 alkyl radicals, or one R8 taken together with the nitrogen atom may form an anilinium radical and R7 is as defined above; and (iii) compounds of the formula B(R7)3 wherein R7 is as defined above, to provide a molar ratio of Group 4 metal:metal in the alkylating activator:metalloid in the compound capable of ionizing the Group 4 metal complex from 1:1:1 to 1:10:5.
- 8. The complex according to claim 7, wherein said metal alkylating activator is selected from the group consisting of (R3)pMgX2−p wherein X is a halide and R3 is a C1-4 alkyl radical and p is 1 or 2; (R3)sAlX3−s wherein R3 is a C1-4 alkyl radical X is halogen and s is an integer from 1 to 3.
- 9. The complex according to claim 8, wherein in the activator capable of ionizing the Group 4 metal complex R7 is a pentafluorophenyl radical, and R5 is a triphenylmethyl cation, Z is a nitrogen atom and R8 is a C1-4 alkyl radical or R8 taken together with the nitrogen atom forms an anilium radical which is substituted by two C1-4 alkyl radicals.
- 10. The complex according to claim 9, wherein said activator capable of ionizing the Group 4 metal complex is selected from the group consisting of:N, N-dimethylaniliumtetrakispentafluorophenyl borate; triphenylmethylium tetrakispentafluorophenyl borate; and trispentafluorophenyl boron.
- 11. The complex according to claim 10, wherein said alkylating activator is a di-C1-4 alkyl magnesium compound.
- 12. The complex according to claim 11 wherein said alkylating activator is butyl ethyl magnesium.
Priority Claims (1)
Number |
Date |
Country |
Kind |
2206944 |
May 1997 |
CA |
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Parent Case Info
This is a division, of application Ser. No. 08/960,489, filed Oct. 29, 1997 now U.S. Pat. No. 6,063,879.
US Referenced Citations (1)
Number |
Name |
Date |
Kind |
5965677 |
Stephan |
Oct 1999 |
A |
Continuations (1)
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Number |
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Parent |
08/960489 |
Oct 1997 |
US |
Child |
09/513681 |
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