Claims
- 1. A transition metal catalyst component for polymerization, represented by the following formula (1):
- 2. The transition metal catalyst component according to claim 1, wherein in the above formulae (5) to (8), R1a, R2a, R3a and R4a are hydrogen.
- 3. The transition metal catalyst component according to claim 1, wherein A is one selected from a 4,5-benz-1-indenyl group, a 5,6-benz-1-indenyl group, a 6,7-benz-1-indenyl group, an α-acenaphtho-1-indenyl group, a 3-cyclopenta[c]phenanthryl group or a 1-cyclopenta[1]phenanthryl group, and B is one selected from a 4,5-benz-1-indenyl group, a 5,6-benz-1-indenyl group, a 6,7-benz-1-indenyl group, an α-acenaphtho-1-indenyl group, a 3-cyclopenta[c]phenanthryl group, a 1-cyclopenta[1]phenanthryl group, a 1-indenyl group, a 4-phenylindenyl group or 4-naphthylindenyl group.
- 4. The transition metal catalyst component according to claim 1, wherein in the above formulae (5) to (7), one of each R1a, R2a or R3a is a C1-20 alkyl group, a C6-10 aryl group or a C7-20 alkylaryl group.
- 5. The transition metal catalyst component according to claim 1, wherein A is a 2-methyl-4,5-benzindenyl group, a 1-(2-methylcyclopenta[1]phenanthryl) group or a 3-(2-methylcyclopenta[c]phenanthryl) group.
- 6. The transition metal catalyst component according to claim 1, wherein Y is a boron substituent having an aromatic group as a substituent.
- 7. The transition metal catalyst component according to claim 1, wherein Y is a phenylboranediyl group (a phenylboryl group).
- 8. The transition metal catalyst component according to claim 1, wherein Y is a boron substituent having an amide group as a substituent.
- 9. The transition metal catalyst component according to claim 1, wherein Y is a boron substituent having a diisopropylamino group (a diisopropylamide group) as a substituent.
- 10. The transition metal catalyst component according to claim 1, wherein X is zirconium.
- 11. A polymerization catalyst comprising the transition metal catalyst component for polymerization as defined in claim 1 and a cocatalyst.
- 12. The polymerization catalyst according to claim 11, wherein as the cocatalyst, an aluminoxane (or an alumoxane) represented by the following formula (2) or (3) is used, and, if necessary, an alkyl aluminum is used:
- 13. The polymerization catalyst according to claim 11, wherein as the cocatalyst, a boron compound and, if necessary, an alkyl aluminum, are used.
- 14. A method for producing an olefin polymer or copolymer, wherein polymerization is carried out by means of a polymerization catalyst comprising a transition metal catalyst component as defined in claim 1 and a cocatalyst.
- 15. A method for producing an olefin polymer or copolymer, wherein polymerization is carried out by means of a polymerization catalyst comprising a transition metal catalyst component as defined in claim 4 and a cocatalyst.
- 16. A method for producing an aromatic vinyl compound-olefin copolymer, wherein polymerization is carried out by means of a polymerization catalyst comprising a transition metal catalyst component as defined in claim 1 and a cocatalyst.
- 17. A method for producing an aromatic vinyl compound-olefin copolymer, wherein polymerization is carried out by means of a polymerization catalyst comprising a transition metal catalyst component as defined in claim 2 and a cocatalyst.
- 18. An olefin (co)polymer obtainable by the method as defined in claim 14.
- 19. An aromatic vinyl compound-olefin copolymer obtainable by the method as defined in claim 16.
- 20. An ethylene-α-olefin-aromatic vinyl compound copolymer or an ethylene-cyclic olefin-aromatic vinyl compound copolymer, obtainable by the method as defined in claim 16.
- 21. A method for producing an olefin polymer or copolymer, wherein polymerization is carried out by means of a polymerization catalyst comprising a transition metal catalyst component as defined in claim 5 and a cocatalyst.
- 22. A method for producing an aromatic vinyl compound-olefin copolymer, wherein polymerization is carried out by means of a polymerization catalyst comprising a transition metal catalyst component as defined in claim 3 and a cocatalyst.
- 23. An olefin (co)polymer obtainable by the method as defined in claim 15.
- 24. An aromatic vinyl compound-olefin copolymer obtainable by the method as defined in claim 17.
- 25. An aromatic vinyl compound-olefin copolymer obtainable by the method as defined in claim 22.
- 26. An ethylene-α-olefin-aromatic vinyl compound copolymer or an ethylene-cyclic olefin-aromatic vinyl compound copolymer, obtainable by the method as defined in claim 17.
- 27. An ethylene-α-olefin-aromatic vinyl compound copolymer or an ethylene-cyclic olefin-aromatic vinyl compound copolymer, obtainable by the method as defined in claim 22.
- 28. The transition metal catalyst component according to claim 1, wherein Y is a substituted boron group having bonds to A and B and having hydrogen or a C1-20 hydrocarbon group selected from the group consisting of an alkyl group, an aryl group, an alkylaryl group and an arylakyl group, as a substituent, and the substituent in Y may contain from 1 to 3 boron, silicon, phosphorus, selenium, oxygen, sulfur or halogen atoms.
- 29. The transition metal catalyst component according to claim 28, wherein each of R1a, R2a and R3a of A is hydrogen.
- 30. A method for producing an olefin block copolymer, an aromatic vinyl compound-olefin block copolymer or an aromatic vinyl compound-olefin block copolymer composition, wherein polymerization is carried out by means of a polymerization catalyst comprising the transition metal catalyst component as defined in claim 28 and a cocatalyst.
- 31. The method for producing an olefin block copolymer, an aromatic vinyl compound-olefin block copolymer or an aromatic vinyl compound-olefin block copolymer composition according to claim 30, wherein a structure transition between SP2 structure and SP3 structure of a transition metal compound as a catalyst component for polymerization is used.
- 32. An olefin block copolymer, an aromatic vinyl compound-olefin block copolymer or an aromatic vinyl compound-olefin block copolymer composition, obtainable by the method as defined in claim 30.
- 33. The aromatic vinyl compound-olefin block copolymer according to claim 32, wherein the aromatic vinyl compound content is from 2 mol % to 50 mol %, the remainder is an olefin, and the aromatic vinyl compound content and at least one melting point of melting points in which a crystal-melting heat observed by DSC measurement is at least 10 J/g, satisfy the following relational formulae,
- 34. The aromatic vinyl compound-olefin bock copolymer composition according to claim 32, wherein there is contained at least 1 wt % of an aromatic vinyl compound-olefin block copolymer having an average aromatic vinyl compound content of from 5 mol % to 50 mol % and having at least one melting point of melting points in which a crystal-melting heat is at least 10 J/g observed by DSC measurement, in a range of from 110° C. to 140° C., preferably from 120° C. to 140° C.
Priority Claims (2)
Number |
Date |
Country |
Kind |
2000-069733 |
Mar 2000 |
JP |
|
2000-185662 |
Jun 2000 |
JP |
|
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application is a continuation in part of U.S. patent application Ser. No. 09/926,523 filed Nov. 14, 2001 and incorporated entirely herein by reference.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09926523 |
Nov 2001 |
US |
Child |
10246641 |
Sep 2002 |
US |