Claims
- 1. A process for the preparation of poly(aryl ethers) which comprises contacting a polymerizable composition comprising at least one cyclic poly(aryl ether) oligomer represented by the formula: ##STR28## where each Y is divalent oxygen or divalent sulfur, each Ar is an aromatic diradical which has at least one electron withdrawing group attached to the aromatic ring other than Y, and n is an integer greater than 1, with a ring opening polymerization catalyst at a temperature from 250.degree. C. to 450.degree. C.
- 2. The process of claim 1 wherein at least one aromatic ring of the aromatic diradical Ar has attached to it 1-4 monovalent electron withdrawing groups.
- 3. The process of claim 2 wherein said monovalent electron withdrawing groups are independently selected from --CN, --NO.sub.2, --CHO, --CO.sub.2 R, --CO.sub.2 NH.sub.2, --F, --CF.sub.3, --P(O)(OR).sub.2, --P(O)R.sub.2, --.sup.+ PR.sub.3, --.sup.+ NR.sub.3, --.sup.+ SR.sub.2, where R is a hydrocarbyl radical of 1-12 carbon atoms, imidazole, oxazole, pyrazole, isoxazole or oxapyrazole.
- 4. The process of claim 1 wherein at least two aromatic rings of the aromatic diradical are attached by a divalent electron withdrawing group which is in the backbone of the oligomer.
- 5. The process of claim 4 wherein the divalent electron withdrawing group comprises an electronegative group Z which is --SO.sub.2 --, --CO--, --CONH--, --CONR--, --.sup.+ NR.sub.2 --, --.sup.+ PR.sub.2 --, --.sup.+ SR--, --P(O)R--, --C.sub.6 F.sub.4 --, --C.sub.6 F.sub.4 C.sub.6 F.sub.4 --, --C(CF.sub.3).sub.2 --, --CHCH--, --N.dbd.N--, --CHNNCH--, where R is a hydrocarbyl radical of 1-12 carbon atoms, imidazole, oxazole, pyrazole, isoxazole or oxapyrazole, said oligomer represented by the formula ##STR29## where Y and n are as previously defined and each Ar.sub.A is an arylene group containing at least one aromatic ring.
- 6. A process according to claim 5 wherein Ar.sub.A is selected from the group consisting of: ##STR30##
- 7. A process of claim 4 wherein the aromatic diradical additionally contains one or more linking groups, L, in the backbone of the oligomer where L is selected from the group consisting of: ##STR31## where: R is a C.sub.1 to C.sub.12 hydrocarbyl radical;
- each of the heterocycles may be additionally substituted with one or more groups selected from: C.sub.1 to C.sub.12 hydrocarbyl radicals, halogens, C.sub.1 to C.sub.12 alkoxy or aryloxy radicals, cyano, nitro, alkyolcarbonyl, formyl, alkoxycarbonyl, aryloxycarbonyl, or arylsulfonyl radicals and;
- B is in each occurrance a direct bond, --O--, --S--, --SO.sub.2 --, a carbonyl, a phosphinyl, a phosphine oxidyl, a tertiary amindiyl, or a C.sub.1 to C.sub.24 hydrocarbylene radical optionally substituted with one or more groups selected from halogens, C.sub.1 to C.sub.12 alkoxy or aryloxy radicals, cyano, nitro, alkylcarbonyl, formyl, alkoxycarbonyl, aryloxycarbonyl, arylsulfonyl, or carbonylarylcarbonyl radicals.
- 8. The process of claim 7 wherein the cyclic poly(aryl ether) oligomer is represented by the formula ##STR32## where Y, n, Z, Ar.sub.A, and L are as previously defined.
- 9. The process of claim 1 wherein the polymerizable composition comprises a mixture of cyclic poly(aryl ether) oligomers as described in claim 1.
- 10. The process of claim 1 wherein the cyclic poly(aryl ether) oligomers is represented by: ##STR33##
- 11. The process of claim 10 wherein the cyclic poly(aryl ether) oligomer is represented by ##STR34##
- 12. The process of claim 1 wherein the cyclic poly(aryl ether) oligomer is represented by the formula ##STR35## where Z, Y, and n are as previously defined; Y.sub.1 is divalent oxygen or divalent sulfur; Ar.sub.1, Ar.sub.2, Ar.sub.3 and Ar.sub.4 are arylene groups; Z.sub.1 is independently selected from the group consisting of Z; and a and b are integers of from 1 to 3.
- 13. The process of claim 12 wherein the cyclic poly(aryl ether) oligomer is represented by the formula: ##STR36##
- 14. The process of claim 9 wherein the cyclic poly(aryl ether) oligomer of said mixture are represented by the formula: ##STR37##
- 15. The process of claim 14 wherein the cyclic poly(aryl ether) oligomers of said mixture are represented by one or more of formulas I, IV, IX, X and XI.
- 16. The process of claim 9 wherein the cyclic poly(aryl ether) oligomers of said mixture are represented by the formula ##STR38## where Z, Y and n are as previously defined; Y.sub.1 is divalent oxygen or divalent sulfur independently selectable from Y; Ar.sub.1, Ar.sub.2, Ar.sub.3 and Ar.sub.4 are arylene groups independently selected from the group consisting of Ar.sub.A ; Z.sub.1 is independently selectable from the group consisting of Z; and a and b are integers of from 1 to 3.
- 17. The process of claim 1 wherein the polymerizable composition comprises a mixture of
- (a) at least 10 percent of one or more cyclic poly(aryl ether) oligomers represented by the formula ##STR39## and (b) up to 90 percent of one or more linear poly(aryl ether) polymers wherein the repeating unit is ##STR40## where Ar, Y and n are as previously defined and m is an integer greater than 20.
- 18. The process according to claim 1 wherein the polymerizable composition is prepared by admixing at least one cyclic poly(aryl ether) oligomer and a ring opening polymerization catalyst in an inert diluent and then removing said diluent therefrom.
- 19. The process of claim 18 wherein the inert diluent is a high boiling polar liquid.
- 20. The process of claim 19 wherein the high boiling polar liquid is diphenyl sulfone, benzophenone, dimethyl sulfoxide, dimethyl acetamide, N-methylpyrrolidinone or N-cyclohexylpyrrolidinone.
- 21. The process of claim 1 wherein the ring opening polymerization catalyst is a salt represented by the formula M.sub.c B.sub.d, where M is a monovalent metal ion, a divalent metal ion, .sup.+ NR.sub.4 or .sup.+ PR.sub.4, where R is a hydrocarbyl radical of 1-12 carbon atoms, imidazole, oxazole, pyrazole, isoxazole or oxapyrazole, B is a halide, carbonate, hydrogen carbonate, aryl or alkyl oxide, cyanide, nitrate, nitrite, hydroxide, phosphate, or aryl or alkyl carboxylate, and c and d are integers which satisfy valency requirements.
- 22. The process of claim 21 wherein the ring opening polymerization catalyst is cesium fluoride.
- 23. The process of claim 1 wherein the ring opening polymerization catalyst is produced in situ.
- 24. The process of claim 23 wherein the in situ produced ring opening polymerization catalyst is derived from the reaction of a dihalogenobenzenoid compound and a metal salt of a bisphenol compound.
- 25. The process of claim 24 wherein the in situ produced ring opening polymerization catalyst is derived from a mixture of CsOC.sub.6 H.sub.4 SO.sub.2 C.sub.6 H.sub.4 OCs and FC.sub.6 H.sub.4 SO.sub.2 C.sub.6 H.sub.4 F.
- 26. The process of claim 1 wherein the ring opening polymerization catalyst comprises from about 0.1 percent to about 10 percent by weight of the polymerizable composition.
- 27. The process of claim 26 wherein the ring opening polymerization catalyst comprises from about 0.5 percent to about 5 percent by weight of the polymerizable composition.
- 28. The process of claim 27 wherein the ring opening polymerization catalyst comprises from about 0.5 percent to about 2.5 percent by weight of the polymerizable composition.
- 29. The process of claim 1 wherein the temperature is from about 275.degree. C. to about 400.degree. C.
- 30. The process of claim 29 wherein the temperature is from about 275.degree. C. to about 375.degree. C.
- 31. A process for the preparation of a composite which comprises contacting a polymerizable composite composition comprising a reinforcing material and at least one cyclic poly(aryl ether) oligomer represented by the formula: ##STR41## where each Y is a divalent oxygen or divalent sulfur, each Ar is an aromatic diradical which comprises one or more C.sub.6 to C.sub.20 arylene groups and has at least one electron withdrawing group attached to an aromatic ring, and n is an integer from 1 to about 20 with the proviso that for integer values of n equal to 1 to 2 all linkages between independent aromatic rings comprise at least one atom, with a ring opening polymerization catalyst at a temperature from 250.degree. C. to 450.degree. C.
- 32. The process of claim 31 wherein at least one aromatic ring of the aromatic diradical Ar has attached to it 1-4 monovalent electron withdrawing groups.
- 33. The process of claim 32 wherein said monovalent electron withdrawing groups are independently selected from --CN, --NO.sub.2, --CHO, --CO.sub.2 R, --CO.sub.2 NH.sub.2, --F, --CF.sub.3, --P(O)(OR).sub.2, --P(O)R.sub.2, --.sup.+ PR.sub.3, --.sup.+ NR.sub.3, --.sup.+ SR.sub.2, where R is a hydrocarbyl radical of 1-12 carbon atoms, imidazole, oxazole, pyrazole, isoxazole or oxapyrazole.
- 34. The process of claim 31 wherein two aromatic rings of the aromatic diradical are connected by a divalent electron withdrawing group which is in the backbone of the oligomer.
- 35. The process of claim 34 wherein the divalent electron withdrawing group comprises an electronegative group Z which is --SO.sub.2 --, --CO--, --CONH--, --CONR--, --.sup.+ NR.sub.2 --, --.sup.+ PR.sub.2 --, --.sup.+ SR--, --P(O)R--, --C.sub.6 F.sub.4 --, --C.sub.6 F.sub.4 C.sub.6 F.sub.4 --, --C(CF.sub.3).sub.2 --, --CHCH--, --N.dbd.N--, --CHNNCH--, where R is a hydrocarbyl radical of 1-12 carbon atoms, imidazole, oxazole, pyrazole, isoxazole or oxapyrazole, said oligomer represented by the formula ##STR42## where Y and n are as previously defined and each Ar.sub.A is an arylene group containing at least one aromatic ring.
- 36. The process of claim 35 wherein Ar.sub.A is selected from the group consisting of: ##STR43## where Y, Ar, Z and n are as previously defined, and Ar.sub.1 is an aromatic diradical which may be the same as or different from Ar.
- 37. The process of claim 34 wherein the aromatic diradical additionally contains one or more linking groups, L, in the backbone of the oligomer, where L is selected from the group consisting of: ##STR44## where: R is a C.sub.1 to C.sub.12 hydrocarbyl radical;
- each of the heterocycles may be additionally substituted with one or more groups selected from C.sub.1 to C.sub.12 hydrocarbyl radicals, halogens, C.sub.1 to C.sub.12 alkoxy or aryloxy radicals, cyano, nitro, alkylcarbonyl, formyl, alkoxycarbonyl, aryloxycarbonyl, or arylsulfonyl radicals; and
- B is in each occurrence a direct bond, --O--, --S--, --SO.sub.2 --, a carbonyl, a phosphinyl, a phosphine oxidyl, a tertiary amindiyl, or a C.sub.1 to C.sub.24 hydrocarbylene radical optionally substituted with one or more groups selected from halogens, C.sub.1 to C.sub.12 alkoxy or aryloxy radicals, cyano, nitro, alkylcarbonyl, formyl, alkoxycarbonyl or aryloxycarbonyl, arylsulfonyl, or carbonylarylcarbonyl radicals.
- 38. The process of claim 31 wherein the cyclic poly(aryl ether) oligomer is represented by the formula ##STR45## where Z, Y and n are as previously defined; Y.sub.1 is divalent oxygen or divalent sulfur independently selectable from Y; Ar.sub.1, Ar.sub.2, Ar.sub.3 and Ar.sub.4 are arylene groups independently selected from the group consisting of Ar.sub.A ; Z.sub.1 is independently selectable from the group consisting of Z; and a and b are integers of from 1 to 3.
- 39. The process of claim 37 wherein the cyclic poly(aryl ether) oligomer is represented by the formula ##STR46## where Y, n, Z, Ar.sub.A, and L are as previously defined.
- 40. The process of claim 31 wherein the polymerizable composite composition comprises a mixture of cyclic poly(aryl ether) oligomers as described in claim 33.
- 41. The process of claim 31 wherein the cyclic poly(aryl ether) oligomer is represented by the formula: ##STR47##
- 42. The process of claim 41 wherein the cyclic poly(aryl ether) oligomer is represented by the formula: ##STR48##
- 43. The process of claim 38 wherein the cyclic poly(aryl ether) oligomer is represented by the formula: ##STR49##
- 44. The process of claim 40 wherein the cyclic poly(aryl ether) oligomers of said mixture are represented by the formula: ##STR50##
- 45. The process of claim 40 wherein the cyclic poly(aryl ether) oligomer is represented by the formula: ##STR51## where Z, Y, and n are as previously defined; Y.sub.1 is divalent oxygen or divalent sulfur; Ar.sub.1, Ar.sub.2, Ar.sub.3 and Ar.sub.4 are arylene groups; Z.sub.1 is independently selected from the group consisting of Z; and a and b are integers of from 1 to 3.
- 46. The process of claim 14 wherein the cyclic poly(aryl ether) oligomers of said mixture are represented by one or more of formulas I, IV, IX, X or XI.
- 47. The process of claim 31 wherein the polymerizable composite composition comprises
- (a) at least 10 of one or more cyclic poly(aryl ether) oligomers represented by the formula ##STR52## and (b) up to 90 percent of one or more linear poly(aryl ether) polymers wherein the repeating unit is ##STR53## where Ar, Y and n are as previously defined and m is an integer greater than 20.
- 48. The process according to claim 31 wherein the polymerizable composite composition is prepared by admixing at least one cyclic poly(aryl ether) oligomer, a ring opening polymerization catalyst and at least one reinforcing material in an inert diluent and then removing said diluent therefrom.
- 49. The process of claim 48 wherein the diluent is a high boiling polar liquid.
- 50. The process of claim 49 wherein the high boiling polar liquid is diphenyl sulfone, benzophenone, dimethyl sulfoxide, dimethyl acetamide, N-methylpyrrolidinone or N-cyclohexylpyrrolidinone.
- 51. The process of claim 31 wherein the ring opening polymerization catalyst is a salt represented by the formula M.sub.c B.sub.d, where M is a monovalent metal ion, a divalent metal ion, .sup.+ NR.sub.4 or .sup.+ PR.sub.4, where R is a hydrocarbyl radical of 1-12 carbon atoms, imidazole, oxazole, pyrazole, isoxazole or oxapyrazole, B is a halide, carbonate, hydrogen carbonate, aryl or alkyl oxide, cyanide, nitrate, nitrite, hydroxide, phosphate, or aryl or alkyl carboxylate, and c and d are integers which satisfy valency requirements.
- 52. The process of claim 51 wherein the ring opening polymerization catalyst is cesium fluoride.
- 53. The process of claim 31 wherein the ring opening polymerization catalyst is produced in situ.
- 54. The process of claim 53 wherein the in situ produced ring opening polymerization catalyst is derived from the thermal reaction of a dihalogenobenzenoid compound and a metal salt of a bisphenol compound.
- 55. The process of claim 54 wherein the in situ produced ring opening polymerization catalyst is derived from a mixture of CsOC.sub.6 H.sub.4 SO.sub.2 C.sub.6 H.sub.4 OCs and FC.sub.6 H.sub.4 SO.sub.2 C.sub.6 H.sub.4 F.
- 56. The process of claim 31 wherein the ring opening polymerization catalyst comprises from about 0.1 percent to about 10 percent by weight of the polymerizable composition.
- 57. The process of claim 56 wherein the ring opening polymerization catalyst comprises from about 0.5 percent to about 5 percent by weight of the polymerizable composition.
- 58. The process of claim 57 wherein the ring opening polymerization catalyst comprises from about 0.5 percent to about 2.5 percent by weight of the polymerizable composition.
- 59. The process of claim 31 wherein the temperature is from about 275.degree. C. to about 400.degree. C.
- 60. The process of claim 59 wherein the temperature is from about 275.degree. C. to about 375.degree. C.
- 61. The process of claim 31 wherein the reinforcing material is a fiber of glass, carbon or a mixture thereof.
- 62. An article made by the process of claim 1.
- 63. A composite made by the process of claim 31.
Parent Case Info
This application is a continuation-in-part of application Ser. No. 07/402,177 filed Sep. , 1989, hereby incorporated by reference, now abandoned.
US Referenced Citations (6)
Foreign Referenced Citations (2)
Number |
Date |
Country |
0317226 |
May 1989 |
EPX |
1226882 |
Sep 1989 |
GBX |
Non-Patent Literature Citations (2)
Entry |
Cella, et al., Ring Opening Polymerization of Cyclic Ethers & Thioethers, Imides, Sulfones via Aromatic Ether-Ether Exchange; Amer. Chem. Soc. Polymer Prep. vol. 30, No. 2 (1989), pp. 142-143. |
Cella, et al., Poly. Prepr. 30(2), 581.varies.582, (Sep. 1989). |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
402177 |
Sep 1989 |
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