Claims
- 1. A method of producing a poly(arylene ether ketone) which comprises polymerizing a monomer system comprising:
- (I)
- (i) phosgene or an aromatic diacid dihalide together with
- (ii) a polynuclear aromatic compound containing two active hydrogen atoms or
- (II) a polynuclear aromatic compound containing both an acid halide group and an active hydrogen; in a reaction medium wherein Lewis base is substantially absent, comprising:
- (A) a Lewis acid in an amount of substantially one equivalent per equivalent of carbonyl groups present, plus an amount effective to act as a catalyst for the polymerization, and
- (B) a non-protic diluent in an amount from 0 to 93% by weight based on the weight of the total reaction mixture;
- wherein
- (a) when the monomer system is (I) and compound (I)(ii) contains an undeactivated aryloxy group:
- (aa) the Lewis acid is present in excess of the minimum amount specified in (A) above by an amount of up to 0.8 equivalents per equivalent of undeactivated aryloxy groups present, and, if the acid halide groups are situated on separate non-fused aromatic rings, by an additional amount of up to 0.5 equivalents per equivalent of acid halide groups; and
- (bb) the concentration of monomers in the reaction mixture is at least 7% by weight, based on the total weight of the reaction mixture; with the further proviso that when the diacid dihalide (I)(i) is benzene dicarbonyl dichloride or diphenyl ether dicarbonyl dichloride and compound (I)(ii) is H--Ar--O--Ar--H wherein each Ar is independently selected from substituted or unsubstituted phenylene and substituted or unsubstituted polynuclear aromatic moieties free from ketone carbonyl and ether oxygen groups, the polymer produced is at least partially crystalline;
- (b) when the monomer system is (II) and contains an undeactivated aryloxy group, the Lewis acid is present in excess of the minimum specified in (A) above by an amount of up to 0.8 equivalent per equivalent of undeactivated aryloxy groups in the monomers; and
- (c) when the monomer system is either (I) or (II) and does not contain any undeactivated aryloxy groups, the Lewis acid is present in an amount in excess of the minimum specified in (A) above by at least
- 0. 6+[0.25.times.tanh(50(0.1-D))]
- equivalents per equivalent of acid halide groups, where D is the molar ratio of monomer to diluent.
- 2. A method of producing a poly(arylene ether ketone) which comprises polymerizing a monomer system comprising:
- (I)
- (i) phosgene or an aromatic diacid dihalide together with
- (ii) a polynuclear aromatic comonomer selected from the group consisting of:
- (a) H--Ar--O--Ar--H,
- (b) H--(Ar--O).sub.n --Ar--H, wherein n is 2 or 3,
- (c) H--Ar--O--Ar--(CO--Ar--O--Ar).sub.m --H, wherein m is 1, 2, or 3, and
- (d) H--(Ar--O).sub.n --Ar--CO--Ar--(O--Ar).sub.m --H, wherein m and n are as hereinabove defined;
- (II) an acid halide of the formula:
- H--Ar--O--[(Ar--CO).sub.p --(Ar--O).sub.q --(Ar--CO).sub.r ].sub.k --Ar--CO--Z,
- wherein Z is halogen; k is 0, 1, or 2; p is 1 or 2; q is 0, 1, or 2; and r is 0, 1, or 2; or
- (III) an acid halide of the formula:
- H--(Ar--O).sub.n --Ar--Y,
- wherein Y is CO--Z or CO--Ar--CO--Z and n and Z are as hereinabove defined;
- wherein each Ar is independently selected from substituted or unsubstituted phenylene, and substituted or unsubstituted polynuclear aromatic moieties free of ketone carbonyl and ether oxygen groups; in a reaction medium wherein Lewis base is substantially absent, comprising:
- (A) a Lewis acid in an amount of substantially one equivalent per equivalent of carbonyl groups present, plus an amount effective to act as a catalyst for the polymerization, and
- (B) a non-protic diluent in an amount from 0 to 93% by weight, based on the weight of the total reaction mixture;
- wherein
- (i) when the monomer system includes a diacid dihalide and a comonomer as defined in (I)(ii)(a), (I)(ii)(b) or (I)(ii)(d) above:
- (aa) the Lewis acid is present in excess of the minimum specified in (A) above by an amount of up to 0.8 equivalents per equivalent of undeactivated aryloxy groups in the monomers, and, if the acid halide groups are situated on separate non-fused aromatic rings, by an additional amount of up to 0.5 equivalents per equivalent of acid halide groups, and
- (bb) the concentration of monomers in the reaction mixture is at least 7% by weight, based on the total weight of the reaction mixture; with the further proviso that when the monomer system includes a comonomer as defined in (I)(ii)(a) and the diacid dihalide is benzene dicarbonyl dichloride or diphenyl ether dicarbonyl dichloride, the polymer produced is at least partially crystalline; or
- (ii) when the monomer system is III, the Lewis acid is present in excess of the minimum specified in (A) above by an amount of up to 0.8 equivalent per equivalent of undeactivated aryloxy groups in the monomers; or
- (iii) when the monomer system is (II) or (I)(i) together with (I)(ii)(c), the Lewis acid is present in an amount in excess of the minimum specified in (A) above by at least
- 0. 6+[0.25.times.tanh(50(0.1-D))]
- equivalents per equivalent of acid halide groups, where D is the molar ratio of monomer to diluent.
- 3. A method in accordance with claim 1 or 2, wherein the Lewis acid is selected from the group consisting of aluminum trichloride, boron trichloride, aluminum tribromide, titanium tetrachloride, antimony pentachloride, ferric chloride, gallium trichloride, and molybdenum pentachloride.
- 4. A method in accordance with claim 3, wherein the Lewis acid is aluminum trichloride.
- 5. A method in accordance with claim 3, wherein the Lewis acid is aluminum tribromide.
- 6. A method in accordance with claim 1 or 2, wherein the polymerization is carried out in the presence of a non-protic diluent.
- 7. A method in accordance with claim 6, wherein the diluent has a dielectric constant of at least about 2.5 at 24.degree. C.
- 8. A method in accordance with claim 6, wherein the diluent has a dielectric constant in the range of from about 4.0 to about 25 at 24.degree. C.
- 9. A method in accordance with claim 6, wherein the diluent is selected from the group consisting of methylene chloride, carbon disulfide, o-dichlorobenzene, 1,2,4-trichlorobenzene, o-difluorobenzene, 1,2-dichloroethane, 1,2,3,4-tetrachloroethane, and tetrachloroethylene.
- 10. A method in accordance with claim 1 or 2, wherein a capping agent is added to the reaction medium.
- 11. A method in accordance with claim 10, wherein both a nucleophilic and an electrophilic capping agent are added to the reaction medium.
- 12. A method in accordance with claim 11, wherein the nucleophilic capping agent is selected from the group consisting of 4-chlorobiphenyl, 4-phenoxybenzophenone, biphenyl, 4-(4-phenoxyphenoxy)benzophenone, and 4-benzenesulfonylphenyl phenyl ether.
- 13. A method in accordance with claim 11, wherein the electrophilic capping agent is selected from the group consisting of benzoyl chloride and benzenesulfonyl chloride.
- 14. A method in accordance with claim 2, wherein the monomer system comprises phosgene or an aromatic diacid dihalide together with a polynuclear aromatic comonomer of the formula
- H--Ar--O--Ar--H
- 15. A method in accordance with claim 14, wherein the monomer system comprises terephthaloyl or isophthaloyl chloride or mixtures thereof and diphenyl ether.
- 16. A method in accordance with claim 14, wherein the Lewis acid is aluminum trichloride.
- 17. A method in accordance with claim 14, wherein the concentration of monomers in the reaction medium is at least about 10% based on the total weight of the reaction mixture.
- 18. A method in accordance with claim 14, wherein the concentration of the monomers in the reaction medium is at least about 15% by weight based on the total weight of the reaction mixture.
- 19. A method in accordance with claim 14, wherein the polymerization is conducted at a temperature in the range of -30.degree. C. to +25.degree. C.
- 20. A method in accordance with claim 2, wherein the monomer system comprises phosgene or an aromatic diacid dihalide together with a polynuclear aromatic comonomer of the formula
- H--(Ar--O).sub.n --Ar--H
- 21. A method in accordance with claim 20, wherein the monomer system comprises terephthaloyl chloride and 1,4-diphenoxybenzene.
- 22. A method in accordance with claim 20, wherein the Lewis acid is aluminum trichloride.
- 23. A method in accordance with claim 20, wherein the concentration of the monomers in the reaction medium is at least about 10% based on the total weight of the reaction mixture.
- 24. A method in accordance with claim 20, wherein the concentration of monomers in the reaction medium is at least about 15% by weight based on the total weight of the reaction mixture.
- 25. A method in accordance with claim 20, wherein the polymerization is conducted at a temperature in the range of -30.degree. to +25.degree. C.
- 26. A method in accordance with claim 2, wherein the monomer system comprises phosgene or an aromatic diacid dihalide together with a polynuclear aromatic comonomer of the formula
- H--Ar--O--Ar--(CO--Ar--O--Ar).sub.m --H
- 27. A method in accordance with claim 26, wherein the monomer system comprises terephthaloyl chloride and 1,4-diphenoxybenzophenone.
- 28. A method in accordance with claim 26, wherein the Lewis acid is aluminum trichloride.
- 29. A method in accordance with claim 26, wherein the concentration of the monomers in the reaction medium is at least about 10% based on the total weight of the reaction mixture.
- 30. A method in accordance with claim 26, wherein the polymerization is conducted at a temperature in the range of -30.degree. to +25.degree. C.
- 31. A method in accordance with claim 2, wherein the monomer system comprises phosgene or an aromatic diacid dihalide together with a polynuclear aromatic comonomer of the formula
- H--(Ar--O).sub.n --Ar--CO--Ar--(O--Ar).sub.m --H
- 32. A method in accordance with claim 31, wherein the monomer system comprises phosgene and bis(phenoxyphenoxy)benzophenone.
- 33. A method in accordance with claim 31, wherein the Lewis acid is aluminum trichloride.
- 34. A method in accordance with claim 31, wherein the concentration of monomers in the reaction medium is at least about 10% by weight based on the total weight of the reaction mixture.
- 35. A method in accordance with claim 31, wherein the concentration of monomers in the reaction medium is at least about 15% by weight based on the total weight of the reaction mixture.
- 36. A method in accordance with claim 31, wherein the polymerization is conducted at a temperature in the range of -30.degree. to +25.degree. C.
- 37. A method in accordance with claim 2, wherein the monomer system comprises an acid halide of the formula
- H--Ar--O--[(Ar--CO).sub.p --(Ar--O).sub.q --(Ar--CO).sub.r ].sub.k --Ar--CO--Z
- 38. A method in accordance with claim 37, wherein the monomer system comprises p-phenoxybenzoyl chloride.
- 39. A method in accordance with claim 37, wherein the Lewis acid is aluminum trichloride.
- 40. A method in accordance with claim 37, wherein the concentration of monomers in the reaction medium is at least about 10% by weight based on the total weight of the reaction mixture.
- 41. A method in accordance with claim 37, wherein the polymerization is conducted at a temperature in the range of -30.degree. to +25.degree. C.
- 42. A method in accordance with claim 2, wherein the monomer system comprises an acid halide of the formula
- H--(Ar--O)n--Ar--Y
- 43. A method in accordance with claim 42, wherein the monomer system comprises p-phenoxy-p-phenoxybenzoyl chloride.
- 44. A method in accordance with claim 42, wherein the Lewis acid is aluminum trichloride.
- 45. A method in accordance with claim 42, wherein the polymerization is conducted at a temperature in the range of -30.degree. to +25.degree. C.
Parent Case Info
This application is a continuation of application Ser. No. 07/186,750, filed Apr. 25, 1988 now abandoned,; which is a continuation of application Ser. No. 07/084,668, filed Aug. 11, 1987, now abandoned; which is a divisional of application Ser. No. 06/922,837, filed Oct. 23, 1986, now U.S. Pat. No. 4,709,007; which is a continuation of application Ser. No. 06/594,503, filed Mar. 29, 1984 now abandoned; which is a continuation-in-part of application Ser. No. 06/481,081, filed Mar. 31, 1983, now abandoned; the disclosures of which are incorporated herein by reference.
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Divisions (1)
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Number |
Date |
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Parent |
922837 |
Oct 1986 |
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Continuations (3)
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Date |
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186750 |
Apr 1988 |
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Parent |
84668 |
Aug 1997 |
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Parent |
594503 |
Mar 1984 |
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Continuation in Parts (1)
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481081 |
Mar 1983 |
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