Claims
- 1. A method for preparing a copolycarbonate which comprises reacting (A) at least one aromatic cyclic polycarbonate oligomer composition with (B) at least one acyclic polymer other than a polycarbonate, said polymer containing nucelophilic moieties which are effective to ring-open the cyclic molecules of reagent A.
- 2. A method according to claim 1 wherein reagent A comprises a plurality of structural units of the formula ##STR31## wherein at least about 60% of the total number of R.sup.1 values are divalent aromatic orgnic radicals, the balance thereof being aliphatic, alicyclic or aromatic organic radicals.
- 3. A method according to claim 2 wherein a mixture of cyclic polycarbonate oligomers is used.
- 4. A method according to claim 3 wherein each R.sup.1 radical has the formula
- --A.sup.1 --Y.sup.1 --A.sup.2 -- (II)
- wherein each of A.sup.1 and A.sup.2 is a single-ring divalent aromatic radical and Y.sup.1 is a bridging radical in which one or two atoms separate A.sup.1 from A.sup.2.
- 5. A method according to claim 4 wherein each of A.sup.1 and A.sup.2 is p-phenylene and Y.sup.1 is isopropylidene.
- 6. A method according to claim 2 wherein reagent B is a living anionic vinyl polymer.
- 7. A method according to claim 2 wherein reagent B contains deprotonated hydroxy or carboxy groups.
- 8. A method according to claim 7 wherein reagent B is at least one salt of a polyphenylene ether.
- 9. A method according to claim 8 wherein the polyphenylene ether salt is an alkali metal or alkaline earth metal salt of a homopoly(2,6-dimethyl-1,4-phenylene) ether.
- 10. A method according to claim 9 wherein the polyphenylene ether salt is a sodium salt and the reaction is conducted at a temperature in the range of about 190.degree.-260.degree. C.
- 11. A method according to claim 10 wherein the reaction is conducted in solution.
- 12. A method according to claim 10 wherein the reaction is conducted in the melt.
- 13. A method according to claim 7 wherein reagent B is a salt of a polyimide bisphenol of the formula ##STR32## wherein A.sup.8 is a divalent aromatic radical; A.sup.9 is a tetravalent aromatic radical; R.sup.9 is an aromatic hydrocarbon radical containing about 6-20 carbon atoms, an alkylene or cycloalkylene radical containing about 2-20 carbon atoms, or a bis-alkylenepoly(dialkylsiloxane) radical; and s is from 1 to about 100.
- 14. A method according to claim 13 wherein A.sup.8 is an aromatic hydrocarbon radical; R.sup.9 has the formula ##STR33## wherein Q.sup.3 is a single bond or a divalent bridging group; and the salt is a sodium or tetrakis(amino)phosphonium salt.
- 15. A method according to claim 14 wherein R.sup.9 is an aromatic hydrocarbon radical and Q.sup.3 is --O--R.sup.10 --O--, wherein R.sup.10 has one of the formulas ##STR34## wherein each R.sup.11 is independently hydrogen or methyl; R.sup.12 is a straight chain or branched alkylene radical containing 1-5 carbon atoms, --O--, --S--, --SO.sub.2 --, ##STR35## or --C(CF.sub.3).sub.2 --; and each X.sup.2 is independently hydrogen or halogen.
- 16. A method according to claim 15 wherein A.sup.8 is p-phenylene or m-phenylene, Q.sup.3 has formula XXIII, R.sup.12 is isopropylidene and each X.sup.2 is hydrogen.
- 17. A method according to claim 16 wherein R.sup.9 is m-phenylene or bis(4-phenylene)methane.
- 18. A method according to claim 7 wherein reagent B contains at least one neutral nucleophilic moiety.
- 19. A method according to claim 18 wherein reagent B is at least one secondary amine-terminated aromatic oligomer having the formula
- R.sup.13 --NH--A.sup.10 --Z.sup.4 A.sup.11 Z.sup.4 A.sup.12 --.sub.t Z.sup.4 A.sup.11 Z.sup.4 --A.sup.10 --NHR.sup.13 (XXV)
- wherein:
- R.sup.13 is C.sub.1-4 alkyl or phenyl;
- each of A.sup.10, A.sup.11 and A.sup.12 is independently an aromatic radical, with A.sup.10 and A.sup.12 being divalent and A.sup.11 being divalent or tetravalent;
- Z.sup.4 is a bridging radical containing at least one non-carbon linking atom; and
- t is from 0 to about 20.
- 20. A method according to claim 19 wherein A.sup.10 is p-phenylene or m-phenylene; Z.sup.4 is oxygen or has the formula ##STR36## and A.sup.11 has one of the formulas ##STR37## wherein Q.sup.3 is a single bond or a divalent bridging group.
- 21. A method according to claim 20 wherein R.sup.13 is methyl or phenyl, Z.sup.4 has formula XXVIII, A.sup.11 has formula XX, Q.sup.3 is --O--R.sup.10 --O-- and R.sup.10 has one of the formulas ##STR38## wherein each R.sup.11 is independently hydrogen or methyl; R.sup.12 is a single bond, a straight chain or branched alkylene radical containing 1-5 carbon atoms; --O--, --S--, --SO.sub.2 --, ##STR39## or --C(CF.sub.3).sub.2 --; and each X.sup.2 is independently hydrogen or halogen.
- 22. A method according to claim 21 wherein A.sup.12 is m-phenylene, R.sup.10 has formula XXIII, R.sup.12 is isopropylidene and each X.sup.2 is hydrogen.
- 23. A method according to claim 21 wherein Z.sup.4 is oxygen and A.sup.12 is the bis(4-phenylene)propane radical.
- 24. A method according to claim 23 wherein A.sup.11 has formula XXVI.
- 25. A method according to claim 23 wherein A.sup.11 has formula XXVII.
- 26. A method according to claim 7 wherein reagent B is an anionic polymer of a ring-opened compound.
- 27. A method according to claim 26 wherein reagent B is an anionic polysiloxane comprising a plurality of units of the formula ##STR40## wherein each R.sup.14 is independently a hydrocarbon or substituted hydrocarbon or substituted hydrocarbon radical.
- 28. A method according to claim 27 wherein each R.sup.14 is methyl and the reaction is conducted at a temperature in the range of about 10.degree.-75.degree. C.
- 29. A method according to claim 28 wherein reagent B is an anionic intermediate formed by reacting at least one lactam of the formula ##STR41## wherein R.sup.15 is a divalent aliphatic hydrocarbon or substituted hydrocarbon radical containing a chain of about 2-20 carbon atoms, with a basic reagent.
- 30. A method according to claim 29 wherein R.sup.15 is an alkylene radical and the basic reagent is an alkali metal hydride.
- 31. A method according to claim 30 wherein R.sup.15 contains a chain of about 4-12 carbon atoms, and the reaction of the lactam with the basic reagent and the reaction of said basic reagent with reagent A are both conducted at a temperature within the range of about 90.degree.-150.degree. C.
- 32. A method according to claim 31 wherein said reactions are conducted in the melt.
- 33. A composition according to claim 32 wherein R.sup.1 is (CH.sub.2).sub.5.
- 34. A method according to claim 26 wherein reagent B is formed by contacting a lactone having the formula ##STR42## wherein R.sup.15 is a divalent aliphatic hydrocarbon or substituted hydrocarbon radical containing a chain of about 2-20 carbon atoms, with a non-halide-containing Lewis acid at a temperature in the range of about 125.degree.-175.degree. C.
- 35. A method according to claim 34 wherein R.sup.15 is an alkylene radical containing a chain of about 4-12 carbon atoms.
- 36. A method according to claim 35 wherein the Lewis acid is a freshly purified aluminum C.sub.2-8 alkoxide.
- 37. A method according to claim 36 wherein the lactone is .epsilon.-caprolactone.
- 38. A method according to claim 36 wherein the lactone is pivalolactone.
Parent Case Info
This application is a continuation-in-part of the following applications:
US Referenced Citations (12)
Foreign Referenced Citations (1)
Number |
Date |
Country |
0162379 |
Nov 1985 |
EPX |
Non-Patent Literature Citations (1)
Entry |
Rokicki et al., Polymer Journal, 17, 509-516 (1985). |
Related Publications (5)
|
Number |
Date |
Country |
|
894154 |
Aug 1986 |
|
|
877623 |
Jun 1986 |
|
|
875025 |
Jun 1986 |
|
|
810613 |
Dec 1985 |
|
|
743446 |
Jun 1985 |
|
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
899374 |
Aug 1986 |
|