Claims
- 1. An alkylidenenorbornene polymer, having an intrinsic viscosity of 0.2 to 10 dl/g measured at 50.degree. C. in decahydronaphthalene a principal chain comprising at least 50% by weight of a structural unit represented by the formula (I): ##STR8## wherein R.sub.1 denotes an alkyl group and R.sub.2 denotes a hydrogen atom or an alkyl group.
- 2. An alkylidenenorbornene polymer according to claim 1, wherein R.sub.1 is a C.sub.1-4 alkyl group and R.sub.2 is a C.sub.1-4 alkyl group, or a hydrogen atom.
- 3. An alkylidenenorbornene polymer according to claim 2, wherein R.sub.1 is a methyl group and R.sub.2 is a methyl group, or a hydrogen atom.
- 4. An alkylidenenorbornene polymer according to claim 1 which has a glass transition of 150.degree. C. or more.
- 5. An alkylidenenorbornene polymer, having an intrinsic viscosity of 0.2 to 10 dl/g measured at 50.degree. C. in decahydronaphthalene, which comprises a principal chain comprising at least 50% by weight of a first structural unit represented by the following formula I: ##STR9## wherein R.sub.1 denotes an alkyl group and R.sub.2 denotes a hydrogen atom or an alkyl group, and, in addition to said first structural unit, as a second structural unit in said principal chain, a different cationically polymerized monomer.
- 6. An alkylidenenorbornene polymer according to claim 5, wherein said cationically polymerizable monomer is a member selected from the group consisting of monoolefins, diolefins, vinylaromatic compounds and cyclic ethers.
- 7. An alkylidenenorbornene polymer according to claim 6, wherein said cationically polymerizable monomer is a member selected from the group consisting of isobutene, styrene, .alpha.-methylstyrene and cyclohexene oxide.
- 8. An alkylidenenorbornene polymer according to claim 5 which contains at least 70% by weight of the structural unit represented by the formula (I).
- 9. An alkylidenenorbornene polymer according to claim 5 which has a glass transition temperature of 100.degree. C. or more.
- 10. An alkylidenenorbornene polymer according to claim 9 which has a glass transition temperature of 120.degree. C. or more.
- 11. An alkylidenenorbornene polymer according to claim 1 which has an intrinsic viscosity of 0.4 to 5 dl/g in decahydronaphthalene at 50.degree. C.
- 12. An alkylidenenorbornene polymer according to claim 1 which has a water absorption of 0.2% or less after immersion in water at 25.degree. C. for 24 hours.
- 13. An alkylidenenorbornene polymer according to claim 12 which has a water absorption of 0.1% or less after immersion in water at 25.degree. C. for 24 hours.
- 14. A shaped article having excellent optical properties comprising a polymer as claimed in claim 1.
- 15. A shaped article having excellent optical properties comprising a polymer as claimed in claim 5.
- 16. A process for producing an alkylidenenorbornene polymer having an intrinsic viscosity of 0.2 to 10 dl/g measured at 50.degree. C. in decahydronaphthalene comprising a principal chain comprising at least 50% by weight of a structural unit represented by the formula (I): ##STR10## wherein R.sub.1 denotes an alkyl group and R.sub.2 denotes a hydrogen atom or an alkyl group, which comprises:
- polymerizing an alkylidenenorbornene represented by the formula (II): ##STR11## wherein R.sub.1 and R.sub.2 are the same meanings as defined above, or a mixture thereof with a comonomer cationically copolymerizable therewith, in the presence of a catalyst comprising a Lewis acid and an initiator compound of the formula (III): ##STR12## wherein R.sub.3 denotes an aliphatic or aromatic hydrocarbon group, R.sub.4 and R.sub.5 each independently denote a lower aliphatic hydrocarbon group or an aromatic hydrocarbon group, X denotes a hydroxyl group, an alkoxyl group, an acyloxy group or a halogen.
- 17. A process for producing an alkylidenenorbornene polymer having an intrinsic viscosity of 0.2 to 10 dl/g measured at 50.degree. C. in decahydronaphthalene comprising a principal chain comprising at least 50% by weight of a structural unit represented by the formula (I): ##STR13## wherein R.sub.1 denotes an alkyl group and R.sub.2 denotes a hydrogen atom or an alkyl group, which comprises:
- polymerizing an alkylidenenorbornene represented by the formula II: ##STR14## wherein R.sub.1 and R.sub.2 are the same meanings as defined above, or a mixture thereof with a comonomer cationically copolymerizable therewith, in the presence of a catalyst comprising a Lewis acid and as an initiator at least one compound selected from the group consisting of 2,5-dimethyl-dihydroxyhexane, 2,5-dimethyl-2,5-diacetoxyhexane, 2,5-dimethyl-2,5-dichlorohexyne, 2,4,4,6-tetramethyl-2,6-dihydroxy heptane, 1,3-bis(2-acetoxy-2-propyl)benzene, 1,4-bis(2-methoxy-2-propyl)benzene, and 1,3,4-tris (2-bromo-2-propyl)benzene.
- 18. A process according to claim 16 wherein R.sub.1 and R.sub.2 are independently a C.sub.1 -C.sub.4 alkyl group, or R.sub.2 is a hydrogen atom.
- 19. A process according to claim 18 wherein R.sub.1 is a methyl group and R.sub.2 is a methyl group or a hydrogen atom.
- 20. A process according to claim 16, wherein the Lewis acid is a boron halide or a titanium halide.
- 21. A process according to claim 16, wherein an electron donopa compound is further used.
- 22. A process according to claim 16, wherein said polymerizing is carried out at a temperature of from -150.degree. C. to 100.degree. C.
- 23. A process as claimed in claim 16 wherein said initiator is at least one member selected from the group consisting of tert-butanol, 2,2,4-trimethyl-2-methoxy pentane, 2-phenyl-2-propanol and 2-methoxy-2-phenylpropane.
- 24. A process as claimed in 21 wherein the electron donor is at least one compound represented by the formula (IV) ##STR15## wherein R.sub.6, R.sub.7 and R.sub.8 each independently denote a hydrogen atom, an aliphatic hydrocarbon group or an aromatic group, or R.sub.6, R.sub.7 and R.sub.8 may form a ring structure;and W denotes N, NO, P, PO or PS.
- 25. A process as claimed in claim 21 wherein the electron donor is at least one compound represented by the formula (V): ##STR16## wherein R.sub.6, R.sub.7 and R.sub.8 each independently denote a hydrogen atom, an aliphatic hydrocarbon group or an aromatic group, or R.sub.6, R.sub.7 and R.sub.8 may form a ring structure; and Y denotes CO or SO.sub.2.
- 26. A process as claimed in claim 21 wherein the electron donor is at least one compound represented by the formula (VI)
- R.sub.6 -Z-R.sub.7 (VI)
- wherein R.sub.6 and R.sub.7 each independently denote a hydrogen atom, an aliphatic hydrocarbon group or an aromatic group, or R.sub.7 and R.sub.8 may form a ring structure; and Z denotes O, CO, CO0, OCOO, S, SO or SO.sub.2.
- 27. A process as claimed in claim 21, wherein the electron donor is at least one compound represented by the formula (VII) ##STR17## wherein R.sub.7, R.sub.8, R.sub.9 and R.sub.10 each independently denote a hydrogen atom, an aliphatic group or an aromatic group, or R.sub.7, R.sub.8, R.sub.9 and R.sub.10 may form a ring structure.
Priority Claims (2)
Number |
Date |
Country |
Kind |
2-415129 |
Dec 1990 |
JPX |
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3-329642 |
Nov 1991 |
JPX |
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Parent Case Info
This application is a continuation of application Ser. No. 07/812,482, filed Dec. 23, 1991, now abandoned.
US Referenced Citations (2)
Number |
Name |
Date |
Kind |
3252957 |
Pledger, Jr. |
May 1966 |
|
4100338 |
Suld et al. |
Jul 1978 |
|
Foreign Referenced Citations (1)
Number |
Date |
Country |
2639046 |
May 1990 |
FRX |
Non-Patent Literature Citations (4)
Entry |
Hackh's Chemical Dictionary, 4th ed., McGraw-Hill Book Co., New York, 199 (1969). |
Hackh's Chemical Dictionary, 4th edition, McGraw-Hill Inc., N.Y., 331 (1969). |
Makromol. Chem., Rapid Commun. 1, 467-472 (1980). |
La Chimica E L'Industria vol. 45 N. 12-Dec. 1963. |
Continuations (1)
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Number |
Date |
Country |
Parent |
812482 |
Dec 1991 |
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