Claims
- 1. A process for producing a poly(arylene ether) composition comprising:reacting a compound of Formula A where r is an integer of from about 0 to about 50, or a compound of Formula D wherein q is an integer of from about 0 to about 49 with a compound of formula B HO—R—OH wherein R is an aromatic nucleus which imparts a glass transition temperature of greater than 300° C. to the composition, under conditions sufficient to produce the composition.
- 2. The process of claim 1 wherein r is from about 1 to about 4.
- 3. The process of claim 2 wherein said compound of the formula A is comprised of hexafluorobenzene, decafluoro-biphenyl having ortho-, meta-, and para-catenation between its aromatic rings, perfluoro-para-terphenyl, perfluoro-meta-terphenyl, perfluoro-ortho-terphenyl, tetradecafluoro-para-terphenyl, tetradecafluoro-meta-terphenyl, tetradecafluoro-ortho-terphenyl, octadecafluoro-para,para-terphenyl or all positional isomers thereof due to ring catenation, perfluoro-para,para-tetraphenyl and all positional isomers thereof due to ring catenation, or mixtures thereof.
- 4. The process of claim 1 wherein q is from about 0 to about 3.
- 5. The process of claim 1 wherein the temperature of said reaction is from about 100° C. to about 175° C.
- 6. The process of claim 1 wherein the molar ratio of compounds having formula A or formula D to compounds having Formula B is about 1:1 to about 1:0.95.
- 7. A process of producing a composition of formula C wherein m is an integer of from about 0 to about 50; and n is an integer of from about 1 to about 200; comprising:reacting a compound of Formula A wherein r is an integer of from about 0 to about 50 with a compound of formula B:HO—R—OH wherein R comprises: or mixtures thereof, under conditions sufficient to produce the composition.
- 8. The process of claim 7 wherein said compound having formula B is comprised of: or mixtures thereof.
- 9. The process of claim 7 wherein said R group is comprised of 2,2′-bis(phenylethynyl)-4,4′biphenylenediyl or 2,2′-bis(phenylethynyl)-5,5′-biphenylenediyl.
- 10. The process of claim 7 wherein m is from about 0 to about 4.
- 11. The process of claim 7 wherein n is from about 1 to about 200.
- 12. The process of claim 1 further comprising recovering the poly(arylene ether) composition.
- 13. The composition produced according to the process of claim 1.
- 14. The composition produced according to the process of claim 12.
- 15. The process of claim 1 wherein the compound having formula A and a first compound having formula B are further reacted with a compound containing formula Z under conditions sufficient to produce a product corresponding to formula C″whereinZ is comprised of 1,5-naphthalenediyl, an aromatic nucleus in a second compound having formula B which is independent from said first compound having formula B, or mixtures thereof; Y is independently or mixtures thereof:T1, T2, and T3 are independently comprised of an alkyl having from about 1 to about 10 carbons, an aryl, or mixtures thereof; a is independently an integer from about 1 to about 200; and b is an integer of from about 0 to about 20.
- 16. The process of claim 15 wherein said product is wherein c is independently an integer from about 1 to about 200; and Z is comprised of 1,5-naphthalenediyl, an aromatic nucleus in a second compound having formula B which is independent from said first compound having formula B, or mixtures thereof.
- 17. The process of claim 15 wherein an inorganic base is optionally reacted with said compound having formula A, said first compound having formula B, and said compound containing formula Z.
- 18. The process of claim 17 wherein said inorganic base is potassium carbonate.
- 19. The process of claim 17 wherein the molar ratio of said compound having formula Z to said first compound having formula B is about 20 to about 1.
- 20. The process of claim 17 wherein Z is 1,5-naphthalenediyl.
- 21. The process of claim 1 wherein the compound having formula D and a first compound having formula B are further reacted with a compound containing formula Z under conditions sufficient to produce a product corresponding to formula D″whereinZ is comprised of 1,5-naphthalenediyl, an aromatic nucleus in a second compound having formula B which is independent from said first compound having formula B, or mixtures thereof; Y is independently T1, T2, and T3 are independently comprised of an alkyl having from about 1 to about 10 carbons, an aryl, or mixtures thereof; d is independently an integer from about 1 to about 200; b is an integer of from about 0 to about 20; and q is independently an integer of from about 0 to about 20.
- 22. A film comprised of the composition of claim 13.
- 23. A substrate coated with the composition of claim 13.
- 24. A film comprised of the composition of claim 14.
- 25. A microelectronic device containing the film of claim 22.
- 26. A microelectronic device containing the film of claim 24.
- 27. A composition having formula C R is an aromatic nucleus which imparts a glass transition temperature of greater than 300° C. to the composition; m is an integer of from about 0 to about 50; and n is an integer of from about 1 to about 200.
- 28. A composition having formula D″: whereinZ is comprised of 1,5-naphthalenediyl, an R group wherein R is an aromatic nucleus which imparts a glass transition temperature of greater than 260° C. to the composition, or mixtures thereof; Y is T1, T2, and T3 are independently comprised of an alkyl having from about 1 to about 10 carbons, an aryl, or mixtures thereof; d is independently an integer from about 1 to about 200; b is an integer of from about 0 to about 20; and q is an integer of from about 0 to about 20.
- 29. A composition having formula C″: whereinZ is comprised of 1,5-naphthalenediyl, an R group wherein R is an aromatic nucleus which imparts a glass transition temperature of greater than 260° C. to the composition, or mixtures thereof; Y is independently and mixtures thereof;T1, T2, and T3 are independently comprised of an alkyl having from about 1 to about 10 carbons, an aryl, or mixtures thereof; a is independently an integer from about 1 to about 200; and b is an integer of from about 0 to about 20.
- 30. A process for producing a fluorinated poly(arylene ether) mixture for spin-coating onto a substrate comprising:a) forming a solution from a composition of the formula C whereinR is an aromatic nucleus which imparts a glass transition temperature of greater than 300° C. to the composition; m is an integer of from about 0 to about 50; and n is an integer of from about 1 to about 200 and an aprotic solvent; and b) filtering the solution through at least one filter having a pore size of about 0.1 micrometers.
- 31. The process of claim 30 wherein said aprotic solvent is comprised of cyclic ketones, cyclic amides, and mixtures thereof.
- 32. The process of claim 30 wherein said aprotic solvent is comprised of cyclopentanone, cyclohexanone, cycloheptanone, cyclooctanone, N-methylpyrrolidinone, N-cyclohexyl-pyrrolidinone, or mixtures thereof.
- 33. The process of claim 32 wherein said solvent is cyclopentanone.
- 34. The process of claim 30 wherein said solution is comprised of, based upon the total weight of said solution, from about 50% to about 99% of said solvent and from about 1 to about 50% of said fluorinated poly(arylene ether) composition.
- 35. The process of claim 34 wherein said solution is comprised of, based upon the total weight of said solution, from about 80% to about 97% of said solvent and from about 3 to about 20% of said fluorinated poly(arylene ether) composition.
- 36. The process of claim 30 wherein said solution is filtered sequentially through at least two filters, each of said filters having a different pore size.
- 37. A process for producing a cured, coated substrate comprising:a) forming a solution from a composition of the formula C whereinR is an aromatic nucleus which imparts a glass transition temperature of greater than 300° C. to the composition; m is an integer of from about 0 to about 50; and n is an integer of from about 1 to about 200 and an aprotic solvent; b) filtering the solution; c) applying the solution of step b via spin-coating onto a substrate to form a film thereon; and d) heating the film of step c under conditions sufficient to cure the film.
- 38. A composition having the formula: whereinc is an integer from about 1 to about 200; and Z is comprised of 1,5-naphthalenediyl, an R group wherein R is an aromatic nucleus which imparts a glass transition temperature of greater than 260° C. to the composition, or mixtures thereof.
- 39. A film comprised of the composition of claim 27.
- 40. A substrate coated with the film of claim 39.
- 41. A microelectronic device containing the film of claim 39.
CROSS-REFERENCE TO RELATED APPLICATION
This application claims the benefit of provisional application number 60/000,514 filed on Jun. 26, 1995, which is incorporated herein by reference.
US Referenced Citations (5)
Foreign Referenced Citations (4)
Number |
Date |
Country |
0-373-784 |
Jun 1990 |
EP |
WO 9109070 |
Jun 1991 |
WO |
WO 9109071 |
Jun 1991 |
WO |
WO 9116370 |
Oct 1991 |
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Non-Patent Literature Citations (2)
Entry |
Polymeric Materials Sci. & Eng., vol. 66, 1992, pp. 198-199, Mercer et al.., “Low Dielectric Constant Fluorinated Aryl Ethers”. |
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Provisional Applications (1)
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Number |
Date |
Country |
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60/000514 |
Jun 1995 |
US |
Divisions (1)
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Number |
Date |
Country |
Parent |
08/665132 |
Jun 1996 |
US |
Child |
09/659380 |
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US |
Reissues (1)
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Number |
Date |
Country |
Parent |
08/665132 |
Jun 1996 |
US |
Child |
09/659380 |
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US |