Claims
- 1. An ethylene-aromatic vinyl compound copolymer having an aromatic vinyl compound content of from 1 to less than 55% by molar fraction which comprises an isotactic structure and a head-to-tail bond structure comprising two aromatic vinyl compound units represented by the following formula (1) ##STR22## wherein Ph is an aromatic group.
- 2. An ethylene-aromatic vinyl compound copolymer according to claim 1, wherein the stereoregularity of the aromatic groups in the alternating structure of ethylene and an aromatic vinyl compound represented by the formula (1) contained in its structure, is represented by an isotactic diad index m of more than 0.75, and the alternating structure index .lambda. represented by the formula (i) is smaller than 70 and larger than 1:
- .lambda.=A3/A2.times.100 (i)
- where A3 is the sum of areas of three peaks a, b and c attributable to an ethylene-aromatic vinyl compound alternating structure obtained by 13C-NMR, and A2 is the sum of areas of peaks attributable to the main chain methylene and methine carbon, as observed within a range of from 0 to 50 ppm by 13C-NMR using TMS as standard.
- 3. The ethylene-aromatic vinyl compound copolymer according to claim 1, wherein the index .theta. represented by the following formula (ii), is larger than 70 when the aromatic vinyl compound content is smaller than 45% by molar fraction, or larger than 50 when the aromatic vinyl compound content is at least 45% by molar fraction:
- .theta.=A1/A2.times.100 (ii)
- where A1 is the sum of areas of peaks attributable to methine and methylene carbon .alpha. to .epsilon. in the following formula (2') as observed within the range of from 0 to 50 ppm by 13C-NMR using TMS as standard, and A2 is the sum of areas of peaks attributable to the main chain methylene and methine carbon, as observed within a range of from 0 to 50 ppm by 13C-NMR using TMS as standard: ##STR23## wherein Ph is an aromatic group, xb is an integer of at least 2 representing the number of repeating units, y is an integer of at least 1, which may be the same or different in the respective repeating units, and z is 0 or 1, which may be the same or different in the respective repeating units.
- 4. The ethylene-aromatic vinyl compound copolymer according to claim 2, which shows no peak from 40 to 41 ppm by 13C-NMR using TMS as standard.
- 5. The ethylene-aromatic vinyl compound copolymer according to claim 2, wherein the aromatic vinyl compound content in the copolymer is from 10 to less than 55% by molar fraction.
- 6. The ethylene-aromatic vinyl compound copolymer according to claim 2, wherein the alternating structure index .lambda. is smaller than 70 and larger than 5.
- 7. The ethylene-aromatic vinyl compound copolymer according to claim 2, which has a melting point within a range of from 55.degree. C. to 130.degree. C.
- 8. The ethylene-aromatic vinyl compound copolymer according to claim 2, wherein the stereoregularity of phenyl groups in the alternating structure of ethylene and an aromatic vinyl compound, is represented by an isotactic diad index m of more than 0.85.
- 9. The ethylene-aromatic vinyl compound copolymer according to claim 2, wherein the stereoregularity of phenyl groups in the alternating structure of ethylene and an aromatic vinyl group, is represented by an isotactic diad index m is at least 0.95.
- 10. The ethylene-aromatic vinyl compound copolymer according to claim 1, which has a weight average molecular weight of at least 30,000.
- 11. The ethylene-aromatic vinyl compound copolymer according to claim 1 which has a structure represented by the following formula (2) and a head-to-tail bond structure comprising two aromatic vinyl compound units represented by the formula (1): ##STR24## wherein Ph is an aromatic group, xb is an integer of at least 2 representing the number of repeating units, y is an integer of at least 1, which may be the same or different among the respective repeating units, and z is 0 or 1, which may be the same or different in the respective repeating units.
- 12. The ethylene-aromatic vinyl compound copolymer according to claim 1, having no head-to-tail bond structure of at least three aromatic vinyl compound units.
- 13. The ethylene-aromatic vinyl compound copolymer according to claim 11, having no head-to-tail bond structure of at least three aromatic vinyl compound units.
- 14. The ethylene-aromatic vinyl compound copolymer according to claim 1, wherein the aromatic vinyl compound is styrene.
- 15. The ethylene-aromatic vinyl compound copolymer according to claim 11, wherein the aromatic vinyl compound is styrene.
- 16. A method for producing an ethylene-aromatic vinyl compound copolymer having an aromatic vinyl compound content of from 1 to less than 50% by molar fraction comprising polymerizing ethylene with from 1 to less than 55% by molar fraction of an aromatic vinyl compound in the presence of a catalyst of a transition metal compound of the following formula (3) or (4) and a cocatalyst: ##STR25## wherein each of Ind1 and Ind2 is an unsubstituted or substituted indenyl group, and Ind1 and Ind2 may be the same or different from each other, Y is a carbon, a silicon, a germanium or a boron atom, which has bonds to Ind1 and Ind2 and which also has substituents, wherein the substituents may be the same or different, or may have a cyclic structure, X is hydrogen, a halogen, an alkyl group, an aryl group, a silyl group or an alkoxy group, and M is Zr, Hf or Ti, ##STR26## wherein Ind is an unsubstituted or substituted indenyl group, Cp is an unsubstituted or substituted cyclopentadienyl group, Y is carbon, a silicon, a germanium or a boron atom, which has bonds to Ind and Cp and which also has substituents, wherein the substituents may be the same or different, or may have a cyclic structure, X is hydrogen, a halogen, an alkyl group, an aryl group, a silyl group, or an alkoxy group, and M is Zr, Hf or Ti.
- 17. The method for producing the ethylene-aromatic vinyl compound copolymer according to claim 16, wherein the cocatalyst is an aluminoxane (alumoxane) of the following formula (5) or (6): ##STR27## wherein R is a C.sub.1-5 alkyl group, a C.sub.6-10 aryl group or a hydrogen, m is an integer of from 2 to 100, wherein each R may be the same or different from one another ##STR28## wherein each R' is a C.sub.1-5 alkyl group, a C.sub.6-10 aryl group or hydrogen, and n is an integer of from 2 to 100, wherein each R' may the same or different from one another.
- 18. The process according to claim 16, wherein the catalyst is of formula (3).
- 19. The process according to claim 16, wherein the catalyst is of formula (4).
- 20. The process according to claim 16, wherein the aromatic vinyl compound is styrene.
- 21. The process according to claim 17, wherein polymerization is carried out at from 0 to 160.degree. C.
- 22. An ethylene-aromatic vinyl compound copolymer produced by the method of claim 16.
- 23. An ethylene-aromatic vinyl compound copolymer produced by the method of claim 16, wherein the aromatic compound is styrene.
- 24. A transparent ethylene-aromatic vinyl compound copolymer produced by the method of claim 16, which has a haze of at most 41.5%.
- 25. A transparent ethylene-aromatic vinyl compound copolymer produced by the method of claim 16, which has an aromatic vinyl compound content of at least 1% and less than 10% and a haze of at most 15.5%.
- 26. The transparent ethylene-aromatic vinyl compound copolymer according to claim 24, wherein the aromatic vinyl compound is styrene.
- 27. The transparent ethylene-aromatic vinyl compound copolymer according to claim 25, wherein the aromatic vinyl compound is styrene.
- 28. A molded product produced by molding the transparent ethylene-aromatic vinyl compound copolymer of claim 24.
- 29. A molded product produced by molding the transparent ethylene-aromatic vinyl compound copolymer of claim 25.
Priority Claims (2)
Number |
Date |
Country |
Kind |
8-63399 |
Mar 1996 |
JPX |
|
8-63400 |
Mar 1996 |
JPX |
|
Parent Case Info
This application is a Continuation of application Ser. No. 08/820,082 Filed on Mar. 19, 1997, now U.S. Pat. No. 5,883,213, issued Mar. 16, 1999.
US Referenced Citations (4)
Foreign Referenced Citations (1)
Number |
Date |
Country |
WO 9809999 |
Mar 1998 |
WOX |
Non-Patent Literature Citations (1)
Entry |
Japanese Unexamined Patent Publication JP-A-4-130114. |
Continuations (1)
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Number |
Date |
Country |
Parent |
820082 |
Mar 1997 |
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