Claims
- 1. An aromatic polycarbonate resin having a repeat unit of formula (I): wherein n is an integer of 5 to 5000; Ar1, Ar2, Ar3 and Ar4, which may be the same or different, represent a bivalent aromatic hydrocarbon group which may have a substituent, or a bivalent heterocyclic group which may have a substituent; Ar5 is an aromatic hydrocarbon group which may have a substituent, or a heterocyclic group which may have a substituent; and X is a bivalent aliphatic group, a bivalent cyclic aliphatic group, or in which R1 and R2 are each independently an alkyl group which may have a substituent, an aromatic hydrocarbon group which may have a substituent, or a halogen atom; l and m are each independently an integer of 0 to 4; and p is an integer of 0 or 1, and when p=1, Y is a straight-chain, branched or cyclic alkylene group having 1 to 12 carbon atoms, —O—, —S—, —SO—, —SO2—, in which z is a bivalent aliphatic hydrocarbon group; a is an integer of 0 to 20; b is an integer of 1 to 2000; and R3 and R4 are each independently an alkyl group which may have a substituent or an aromatic hydrocarbon group which may have a substituent.
- 2. The aromatic polycarbonate resin as claimed in claim 1, wherein said repeat unit of formula (I) is represented by formula (IV): wherein n is an integer of 5 to 5000; Ar5 is an aromatic hydrocarbon group which may have a a substituent, or a heterocyclic group which may have a substituent; and X is a bivalent aliphatic group, a bivalent cyclic aliphatic group, or in which R1 and R2 are each independently an alkyl group which may have a substituent, an aromatic hydrocarbon group which may have a substituent, or a halogen atom; l and m are each independently an integer of 0 to 4; and p is an integer of 0 or 1, and when p=1, Y is a straight-chain, branched or cyclic alkylene group having 1 to 12 carbon atoms, —O—, —S—, —SO—, —SO2—, in which Z is a bivalent aliphatic hydrocarbon group; a is an integer of 0 to 20; b is an integer of 1 to 2000; and R3 and R4 are each independently an alkyl group which may have a substituent or an aromatic hydrocarbon group which may have a substituent.
- 3. The aromatic polycarbonate resin as claimed in claim 1, wherein said bivalent aromatic hydrocarbon group represented by Ar1, Ar2, Ar3 and Ar4 is a bivalent group derived from one aromatic hydrocarbon group selected from the group consisting of benzene, naphthalene, biphenyl terphenyl, pyrene, fluorene, and 9,9-dimethylfluorene.
- 4. The aromatic polycarbonate resin as claimed in claim 1, wherein said bivalent heterocyclic group represented by Ar1, Ar2, Ar3 and Ar4 is a bivalent group derived from one heterocyclic group selected from the group consisting of thiophene, banzothiophene, furan, benzofuran and carbazole.
- 5. The aromatic polycarbonate resin as claimed in claim 1, wherein said bivalent heterocyclic group represented by Ar1, Ar2, Ar3 and Ar4 is diphenyl ether group in which two aryl groups are bonded via oxygen, or diphenyl thioether group in which two aryl groups are bonded via sulfur.
- 6. The aromatic polycarbonate resin as claimed in claim 1, wherein said substituent for said bivalent aromatic hydrocarbon group and said bivalent heterocyclic group represented by Ar1, Ar2, Ar3 and Ar4 is selected from the group consisting of a halogen atom, cyano group, nitro group, an alkyl group having 1 to 12 carbon atoms, an alkoxyl group having 1 to 12 carbon atoms, an aryloxy group, a substituted mercapto group, an arylmercapto group, a substituted amino group, an alkylonedioxy group, an alkylenedithio group, and an acyl group.
- 7. The aromatic polycarbonato resin as claimed in claim 1, wherein said aromatic hydrocarbon group represented by Ar5 is an aromatic hydrocarbon group selected from the group consisting of phonyl group, biphenylyl group, terphenylyl group, naphthyl group, anthryl group, pyrenyl group, fluorenyl group, 9,9-dimethyl-2-fluorenyl group, azulenyl group, triphenylenyl group, chrysenyl group, and a group of formula (XI): wherein W is selected from the group consisting of —O—, —S—, —SO—, —SO2—, —CO—, in which R15 is a hydrogen atom, an alkyl group which may have a substituent, an alkoxyl group, a halogen atom, an aromatic hydrocarbon group which may have a substituent, nitro group, cyano group, or a substituted amino group; R16 is a hydrogen atom, an alkyl group which may have a substituent, or an aromatic hydrocarbon group which may have a substituent; and r and s are each independently an integer of 1 to 12.
- 8. The aromatic polycarbonate resin as claimed in claim 1, wherein said heterocyclic group represented by Ar5 is a heterocyclic group selected from the group consisting of thienyl group, benzothienyl group, furyl group, benzofuranyl group and carbazolyl group.
- 9. The aromatic polycarbonate resin as claimed in claim 1, wherein said substituent for said aromatic hydrocarbon group and said heterocyclic group represented by Ar5 is selected from the group consisting of a halogen atom, cyano group, nitro group, an alkyl group having 1 to 12 carbon atoms, an alkoxyl group having 1 to 12 carbon atoms, an aryloxy group, a substituted mercapto group, an arylmercapto group, a substituted amino group, an alkylonedioxy group, an alkylenedithio group, and an acyl group.
- 10. The aromatic polycarbonate resin as claimed in claim 1, wherein said alkyl group represented by R1 to R4 has 1 to 12 carbon atoms.
- 11. The aromatic polycarbonate resin as claimed in claim 1, wherein said aromatic hydrocarbon group represented by R1 to R4 is elected from the group consisting of phenyl group which may have a substituent and biphenylyl group which may have a substituent.
- 12. An aromatic polycarbonate resin having a repeat unit of formula (II) and a repeat unit of formula (III), with the composition ratio of the repeat unit of formula (II) to the repeat unit of formula (III) being in the relationship of 0<k/(k+j)≦1; wherein k is an integer of 5 to 5000; j is an integer of 0 to 5000; Ar1, Ar2, Ar3 and Ar4, which may be the same or different, represent a bivalent aromatic hydrocarbon group which may have a substituent, or a bivalent heterocyclic group which may have a substituent; Ar5 is an aromatic hydrocarbon group which may have a substituent, or a heterocyclic group which may have a substituent; and X is a bivalent aliphatic group, a bivalent cyclic aliphatic group, or in which R1 and R2 are each independently an alkyl group which may have a substituent, an aromatic hydrocarbon group which may have a substituent, or a halogen atom; l and m are each independently an integer of 0 to 4; and p is an integer of 0 or 1, and when p=1, Y is a straight-chain, branched or cyclic alkylene group having 1 to 12 carbon atoms, —O—, —S—, —SO—, —SO2—, in which Z is a bivalent aliphatic hydrocarbon group; a is an integer of 0 to 20; b is an integer of 1 to 2000; and R3 and R4 are each independently an alkyl group which may have a substituent or an aromatic hydrocarbon group which may have a substituent.
- 13. The aromatic polycarbonate resin as claimed in claim 12, wherein said repeat unit of formula (II) is represented by formula (V): wherein k is an integer of 5 to 5000; and Ar5 is an aromatic hydrocarbon group which may have a substituent, or a heterocyclic group which may have a substituent.
- 14. The aromatic polycarbonate resin as claimed in claim 12, wherein said bivalent aromatic hydrocarbon group represented by Ar1, Ar2, Ar3 and Ar4 is a bivalent group derived from one aromatic hydrocarbon group selected from the group consisting of benzene, naphthalene, biphenyl terphenyl, pyrene, fluorene, and 9,9-dimethylfluorene.
- 15. The aromatic polycarbonate resin as claimed in claim 12, wherein said bivalent heterocyclic group represented by Ar1, Ar2, Ar3 and Ar4 is a bivalent group derived from one heterocyclic group selected from the group consisting of thiophene, benzothiophene, furan, benzofuran and carbazole.
- 16. The aromatic polycarbonate resin as claimed in claim 12, wherein said bivalent heterocyclic group represented by Ar1, Ar2, Ar3 and Ar4 is diphenyl ether group in which two aryl groups are bonded via oxygen, or diphenyl thioether group in which two aryl groups are bonded via sulfur.
- 17. The aromatic polycarbonate resin as claimed in claim 12, wherein said substituent for said bivalent aromatic hydrocarbon group and said bivalent heterocyclic group represented by Ar1, Ar2, Ar3 and Ar4 is selected from the group consisting of a halogen atom, cyano group, nitro group, an alkyl group having 1 to 12 carbon atoms, an alkoxyl group having 1 to 12 carbon atoms, an aryloxy group, a substituted mercapto group, an arylmercapto group, a substituted amino group, an alkylenedioxy group, an alkylenedithio group, and an acyl group.
- 18. The aromatic polycarbonate resin as claimed in claim 12, wherein said aromatic hydrocarbon group represented by Ar5 is an aromatic hydrocarbon group selected from the group consisting of phenyl group, biphenylyl group, terphenylyl group, naphthyl group, anthryl group, pyrenyl group, fluoranyl group, 9,9-dimethyl-2-fluorenyl group, asulenyl group, triphenylenyl group, chrysenyl group, and a group of formula (XI): wherein W is selected from the group consisting of —O—, —S—, —SO—, —SO2—, —CO—, in which R15 is a hydrogen atom, an alkyl group which may have a substituent, an alkoxyl group, a halogen atom, an aromatic hydrocarbon group which may have a substituent, nitro group, cyano group, or a substituted amino group; R16 is a hydrogen atom, an alkyl group which may have a substituent, or an aromatic hydrocarbon group which may have a substituent; and r and s are each independently an integer of 1 to 12.
- 19. The aromatic polycarbonate resin as claimed in claim 12, wherein said heterocyclic group represented by Ar5 is a heterocyclic group selected from the group consisting o f thienyl group, benzothienyl group, furyl group, benzofuranyl group and carbazolyl group.
- 20. The aromatic polycarbonate resin as claimed in claim 12, wherein said substituent for said aromatic hydrocarbon group and said heterocyclic group represented by Ar5 is selected from the group consisting of a halogen atom, cyano group, nitro group, an alkyl group having 1 to 12 carbon atoms, an alkoxyl group having 1 to 12 carbon atoms, an aryloxy group, a substituted mercapto group, an arylmercapto group, a substituted amino group, an alkylonedioxy group, an alkylenedithio group, and an acyl group.
- 21. The aromatic polycarbonate resin an claimed in claim 12, wherein said alkyl group represented by R1 to R4 has 1 to 12 carbon atoms.
- 22. The aromatic polycarbonate resin as claimed in claim 12, wherein said aromatic hydrocarbon group represented by R1 to R4 is selected from the group consisting of phenyl group which may have a substituent and biphenylyl group which may have a subutituent.
Priority Claims (3)
Number |
Date |
Country |
Kind |
7-327366 |
Dec 1995 |
JP |
|
8-009392 |
Jan 1996 |
JP |
|
8-012931 |
Jan 1996 |
JP |
|
Parent Case Info
This application is a Division of application Ser. No. 08/767,426 filed on Dec. 16, 1996, now U.S. Pat. No. 5,942,363.
US Referenced Citations (1)
Number |
Name |
Date |
Kind |
6066428 |
Katayama |
May 2000 |
|