Claims
- 1. A method of cleaving perfluoropolyethers to lower molecular weight fragments, comprising the steps of:
- (a) pyrolyzing a perfluoropolyether at a temperature above about 350.degree. C. to cleave the perfluoropolyether into lower molecular weight linear perfluoropolyethers, in the absence of a metal oxide or metal fluoride catalyst;
- (b) condensing and collecting vaporized lower molecular weight linear perfluoropolyethers; and
- (c) treating the collected linear perfluoropolyethers with fluorine gas to eliminate acyl fluoride end groups and any unsaturation of the collected perfluoropolyethers.
- 2. A method of claim 1, wherein the perfluoropolyether is pyrolzed in the presence of an inert gas.
- 3. A method of claim 1, wherein the perfluoropolyether is pyrolyzed in the presence of fluorine gas or a mixture of inert gas and fluorine gas.
- 4. A method of claim 1, wherein the pyrolysis is performed at a pressure above ambient pressure to produce perfluoropolyether fragments of a lower average molecular weight than those produced at ambient pressure.
- 5. A method of claim 1, wherein the pyrolysis is performed at a pressure below ambient pressure to produce perfluoropolyether fragments of a higher average molecular weight than those produced at ambient pressure.
- 6. A method of breaking down perfluoropolyethers into lower molecular weight polymers, comprising the steps of:
- (a) providing a distillation apparatus comprising:
- (i) a sample vessel located in a heating zone;
- (ii) a condensing zone;
- (iii) a collection vessel connected by passageway to the condensing zone; and
- (iv) means for introduction of a gas;
- (b) placing a perfluoropolyether in a sample vessel;
- (c) establishing a flow of inert gas into the apparatus;
- (d) heating the perfluoropolyether by raising the temperature of the heating zone to above 350.degree. C. to cleave the perfluoropolyether into lower molecular weight linear perfluoropolyethers, in the absence of a metal oxide or metal fluoride catalyst;
- (e) maintaining the temperature in the heating zone to vaporize the lower molecular weight linear perfluoropolyethers;
- (f) condensing and collecting vaporized lower molecular weight linear perfluoropolyethers; and
- (g) treating the collected linear perfluoropolyethers with fluorine gas to eliminate acyl fluoride end groups and any unsaturation of the collected perfluoropolyethers.
- 7. A method of cleaving perfluoropolyether solids to produce perfluoropolyether oils, comprising the steps of:
- (a) heating a solid perfluoropolyether to a temperature above 350.degree. C. for a period of time sufficient to cleave the perfluoropolyether into lower molecular weight linear fragments, in the absence of a metal oxide or metal fluoride catalyst;
- (b) condensing and collecting vaporized lower molecular weight linear fragments to obtain an oil; and
- (c) treating the collected linear perfluoropolyethers with fluorine gas to eliminate acyl fluoride end groups and any unsaturation of the collected perfluoropolyethers.
- 8. A method of cleaving perfluoropolyethers to lower molecular weight fragments, comprising the steps of:
- (a) pyrolyzing a perfluoropolyether at a temperature from about 500.degree. C. to 600.degree. C. to cleave the perfluoropolyether into lower molecular weight linear perfluoropolyethers, in the absence of a metal oxide or metal fluoride catalyst;
- (b) condensing and collecting vaporized lower molecular weight linear perfluoropolyethers; and
- (c) treating the collected linear perfluoropolyethers with fluorine gas to eliminate acyl fluoride end groups and any unsaturation of the collected perfluoropolyethers.
- 9. A method of claim 8, wherein the step of pyrolyzing is performed in a distillation apparatus comprising:
- (a) a sample vessel located in a heating zone;
- (b) a condensing zone;
- (c) a collection vessel connected by passageway to the condensing zone; and
- (d) means for introduction of a gas.
- 10. A method of claim 8, wherein the perfluoropolyether oil is produced by pyrolyzing a solid perfluoropolyether.
- 11. A method of claim 1, wherein the perfluoropolyether is selected from the group consisting of perfluoropoly(propylene oxide), perfluoropoly(ethylene oxide), perfluoroethylene oxide/methylene oxide copolymers, perfluoroethylene oxide/propylene oxide copolymers, perfluoropoly(tetramethylene oxide) and perfluoropoly(cyclohexyl oxide).
- 12. A method of claim 8, wherein the perfluoropolyether is selected from the group consisting of perfluoropoly(propylene oxide), perfluoropoly(ethylene oxide), perfluoroethylene oxide/methylene oxide copolymers, perfluoroethylene oxide/propylene oxide copolymers, perfluoropoly(tetramethylene oxide) and perfluoropoly(cyclohexyl oxide).
RELATED APPLICATIONS
This application is a continuation of application Ser. No. 07/092,454, filed Sept. 3, 1987, now U.S. Pat. No. 4,894,484, which is a continuation-in-part application of Ser. No. 06/796,624, filed Nov. 8, 1985, now abandoned.
US Referenced Citations (5)
Foreign Referenced Citations (2)
Number |
Date |
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1226566 |
Mar 1971 |
GBX |
1349723 |
Apr 1974 |
GBX |
Non-Patent Literature Citations (2)
Entry |
Gerhardt et al., J. Chem. Soc. Perkins Trans. I 1321-1328 (1981). |
International Search Report. |
Continuations (1)
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Number |
Date |
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Parent |
92465 |
Sep 1987 |
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Continuation in Parts (1)
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Number |
Date |
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Parent |
796624 |
Nov 1985 |
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