Claims
- 1. A process for producing partially fluorinated ethers, comprising the catalyzed polycondensation of a silyl ether and a fluorinated olefin in the presence of a suitable catalyst, conducted within a temperature range of -50.degree. C. to 120.degree. C.
- 2. The process of claim 1 wherein the catalyst is a source of fluoride ion.
- 3. The process of claim 2 wherein the catalyst is selected from the group consisting of CsF, tris(dialkylamino)sulfonium difluorotrimethylsilicate, tetrabutylammonium fluoride, tris(dialkylamino)sulfonium bifluoride, tris(piperidino)sulfonium bifluoride, tetraalkylammonium bifluorides and tetraarylphosphonium bifluorides.
- 4. The process of claim 1 wherein the catalyst is not a source of fluoride ion.
- 5. The process of claim 4 wherein the catalyst is selected from the group consisting of M.sup.+ ZCO.sub.2.sup.-, M.sup.+ OC.sub.6 H.sub.4 NO.sub.2.sup.-, and M.sup.+ ZSO.sub.2, where z is a linear or branched alkyl group containing from 1 to 10 carbon atoms or phenyl and M.sup.+ is any cation.
- 6. The process of claim 5 wherein M.sup.+ is a cation of structure (Z'.sub.2 N).sub.3 S.sup.+ where Z' is a linear or branched alkyl group containing from 1 to 10 carbon atoms.
- 7. The process of claim 2 conducted in the presence of an inert solvent.
- 8. The process of claim 4 conducted in the presence of an inert solvent.
- 9. The process of claims 7 or 8 conducted in a solvent selected from the group consisting of glyme and tetrahydrofuran.
- 10. The process of claim 9 in which the molar range of bis(silyl)ether to catalyst is from 4-10,000.
- 11. The process of claim 10 in which the molar range of perfluoroolefin to bis(silyl)ether is from 0.9 to 2.5.
- 12. The process of claim 11 in which the concentration of bis(silyl)ether in solution is greater than or equal to 0.1M.
- 13. The process of claim 1 wherein the bis(silyl)ether has the general formula R.sup.2 R.sup.3 R.sup.4 SiOROSiR.sup.5 R.sup.6 R.sup.7 and the fluorinated olefin has the formula R.sub.f.sup.1 (F)C.dbd.C(F)R.sub.f.sup.2 wherein R.sup.2, R.sup.3, R.sup.4, R.sup.5 R.sup.6, R.sup.7 are independently CH.sub.3 -- or C.sub.2 H.sub.5 -- or one of R.sup.2, R.sup.3, R.sup.4, R.sup.5 R.sup.6, and R.sup.7 may be C.sub.6 H.sub.5 -- with the remainder of the groups being independently CH.sub.3 -- or C.sub.2 H.sub.5 --; and R, R.sub.f.sup.1 and R.sub.f.sup.2 are as defined in claim 1.
- 14. The process of claim 13 wherein R is --CH.sub.2 (CF.sub.2).sub.3 CH.sub.2 --, and R.sup.2, R.sup.3, R.sup.4, R.sup.5 R.sup.6, and R.sup.7 are each --CH.sub.3.
- 15. A process for producing a polymer consisting essentially of the repeat unit --[R.sub.f.sup.1 C.dbd.C(R.sub.f.sup.2)ORO]-- comprising, a condensation reaction of a bis(silyl)ether of the formula R.sup.2 R.sup.3 R.sup.4 SiOROSiR.sup.5 R.sup.6 R.sup.7 with a bis(vinyl) ether of the structure R.sub.f.sup.1 (F)C.dbd.C(R.sub.f.sup.2)OROC(R.sub.f.sup.2).dbd.C(F)R.sub.f.sup.1 in the presence of a suitable catalyst,
- wherein:
- R is a diradical of the formula:
- --C.sub.x H.sub.2x-y F.sub.y -- where x is an integer from 2 to 20, y is 0 or an integer from 1 to 2x for a given value of x, but with the additional proviso that the carbon atoms containing the free valences of the diradical not be attached to fluorine atoms, and when x is an integer from 4 to 20 some of the carbon atoms may be internally interrupted with oxygen atoms forming ether structures and with the proviso that the oxygen atoms be separated by two or more carbon atoms;
- --C.sub.6 H.sub.4-a F.sub.a --, wherein a is 0, 1, 2, 3, or 4;
- --C.sub.10 H.sub.6-b F.sub.b --, wherein b is 0 or an integer from 1 to 6 with the proviso that the radical bonds are not on adjacent carbon atoms;
- --C.sub.12 H.sub.8-c F.sub.c --, wherein c is 0 or an integer of 1 to 8, with the proviso that the radical bonds are not on adjacent carbon atoms; or
- --CH.sub.4-d F.sub.d --R.sup.1 --CH.sub.4-e F.sub.e --, wherein d and e are independently 0 or an integer of 1 to 4, R.sup.1 is --CH.sub.2-f F.sub.f --, wherein f is 0 or an integer from 1 to 2x;
- R.sub.f.sup.1 and R.sub.f.sup.2 are independently --C.sub.z F.sub.2z+1, wherein z is an integer from 1 to 10; or R.sub.f.sup.1 and R.sub.f.sup.2 taken together wherein R.sub.f.sup.1 and R.sub.f.sup.2 in the cis configuration are --(CF.sub.2).sub.m --, wherein m is 2, 3 or 4, provided that when R.sub.f.sup.1 and R.sub.f.sup.2 taken together are --(CF.sub.2).sub.m --, R shall not be --CH.sub.2 (CF.sub.2).sub.s CH.sub.2 -- where s is an integer from 1 to 12 and wherein R.sup.2, R.sup.3, R.sup.4, R.sup.5, R.sup.6, R.sup.7 are independently CH.sub.3 -- or C.sub.2 H.sub.5 -- or one of R.sup.2, R.sup.3, R.sup.4, R.sup.5, R.sup.6, and R.sup.7 may be C.sub.6 H.sub.5 -- with the remainder of the groups being independently CH.sub.3 -- or C.sub.2 H.sub.5 --.
- 16. The process of claim 15 wherein the molar ratio of bis(vinyl) ether to bis(silyl) ether is 0.9 to 1.5.
- 17. The process of preparing a polymer consisting essentially of the repeat unit
- --[C(.dbd.CFR.sub.f.sup.1)OR.sup.8 O]-- (B)
- wherein R.sub.f.sup.1 is --C.sub.z F.sub.2z+1, wherein z is an integer from 1 to 10 and wherein R.sup.8 is R, where R is a diradical of the formula --C.sub.x H.sub.2x-y F.sub.y -- where x is an integer from 2 to 20, y is 0 or an integer from 1 to 2x for a given value of x, but with the additional proviso that the carbon atoms containing the free valence of the diradical not be attached to fluorine atoms, and when x is a integer from 4 to 20 some of the carbon atoms may be internally interrupted with oxygen atoms forming ether structures and with the proviso that the oxygen atoms be separated by two or more carbon atoms; --CH.sub.4-a F.sub.a --, wherein a is 0, 1, 2, 3, or 4; --C.sub.10 H.sub.6-b F.sub.b --, wherein b is 0 or an integer from 1 to 6, with the proviso that the radical bonds are not on adjacent carbon atoms; --C.sub.12 H.sub.8-c F.sub.c --, wherein c is 0 or an integer from 1 to 8, with the proviso that the radical bonds are not on adjacent carbon atoms; and --CH.sub.4-d F.sub.d --R.sup.1 --CH.sub.4-e F.sub.e --, wherein d and e are independently 0 or an integer from 1 to 4, R.sup.1 is --CH.sub.2-f F.sub.f --, wherein f is 0 or an integer from 1 to 2x;
- by a polycondensation reaction whereby a bis(silyl) ether of the formula, R.sup.2 R.sup.3 R.sup.4 SiOROSiR.sup.5 R.sup.6 R.sup.7 and a perfluoroolefin of the formula R.sub.f.sup.1 (F)C.dbd.CF.sub.2 are reacted in the presence of a catalyst, and wherein R.sup.2, R.sup.3, R.sup.4, R.sup.5 R.sup.6, R.sup.7 are independently CH.sub.3 -- or C.sub.2 H.sub.5 -- or one of R.sup.2, R.sup.3, R.sup.4, R.sup.5 R.sup.6, and R.sup.7 may be C.sub.6 H.sub.5 -- with the remainder of the groups being independently CH.sub.3 -- or C.sub.2 H.sub.5 --.
- 18. The process of claim 17 wherein the molar ratio of bis(silyl) ether to catalyst is from 4 to 10,000.
- 19. The process of claim 18 wherein the molar ratio of perfluoroolefin to bis(silyl) ether is from 0.9 to 2.5.
- 20. The process of claim 19 conducted in the presence of a solvent.
- 21. The process of claim 20 wherein the molar concentration of bis(silyl) ether in solution is greater than or equal to 0.01M.
- 22. The process of claim 21 conducted at a temperature of from -50.degree. C. to 120.degree. C.
- 23. The process of claim 22 wherein the solvent is selected from the group consisting of glyme and tetrahydrofuran.
- 24. The process of preparing a macrocyclic compound of the structure:
- [C(R.sub.f.sup.1).dbd.C(R.sub.f.sup.2)ORO].sub.w (c)
- wherein R is a diradical of the formula
- --C.sub.x H.sub.2x-y F.sub.y -- where x is an integer from 2 to 20, y is 0 or an integer from 1 to 2x for a given value of x, but with the additional proviso that the carbon atoms containing the free valence of the diradical not be attached to fluorine atoms, and when x is a integer from 4 to 20 some of the carbon atoms may be internally interrupted with oxygen atoms forming ether structures and with the proviso that the oxygen atoms be separated by two or more carbon atoms; --CH.sub.4-a F.sub.a --, wherein a is 0, 1, 2, 3, or 4;
- --C.sub.10 H.sub.6-b F.sub.b --, wherein b is 0 or an integer from 1 to 6, with the proviso that the radical bonds are not on adjacent carbon atoms; --C.sub.12 H.sub.8-c F.sub.c --, wherein c is 0 or an integer from 1 to 8, with the proviso that the radical bonds are not on adjacent carbon atoms; and --CH.sub.4-d F.sub.d --R.sup.1 --CH.sub.4-e F.sub.e --, wherein d and e are independently 0 or an integer from 1 to 4, R.sup.1 is --CH.sub.2-f R.sub.f --, wherein f is 0 or an integer from 1 to 2x; and R.sub.f.sup.1, R.sub.f.sup.2, are independently --C.sub.z F.sub.2z+1, wherein z is an integer from 1 to 10; or R.sub.f.sup.1 and R.sub.f.sup.2 taken together where R.sub.f.sup.1 and R.sub.f.sup.2 in the cis configuration are --(CF.sub.2).sub.m --, wherein m is 2, 3 or 4, provided that when R.sub.f.sup.1 and R.sub.f.sup.2 are as defined, then R shall not be --CH.sub.2 (CF).sub.s CH.sub.2 -- where s is an integer from 1 to 12, C.sub.6 F.sub.5 --, C.sub.10 F.sub.7 -- or C.sub.12 F.sub.9 --, and w is 1, 2, 3 or 4;
- comprising a condensation reaction between a silyl ether of the formula R.sup.2 R.sup.3 R.sup.4 SiOROSiR.sup.5 R.sup.6 R.sup.7 and a perfluoroolefin of the formula R.sub.f.sup.1 (F)C.dbd.C(F)R.sub.f.sup.2 in dilute solution in a solvent in the presence of a catalyst, where R.sub.f.sup.1 and R.sub.f.sup.2 are as defined above and wherein R.sup.2, R.sup.3, R.sup.4, R.sup.5 R.sup.6, R.sup.7 are independently CH.sub.3 -- or C.sub.2 H.sub.5 -- or one of R.sup.2, R.sup.3, R.sup.4, R.sup.5 R.sup.6, and R.sup.7 may be C.sub.6 H.sub.5 -- with the remainder of the groups being independently CH.sub.3 -- or C.sub.2 H.sub.5 --.
- 25. The process of claim 24 where the solvent is selected from the group consisting of glyme and tetrahydrofuran.
- 26. The process of claim 24 wherein the catalyst is a source of fluoride ions.
- 27. The process of claim 25 where the catalyst is selected from the group consisting of CsF, tris(dialkylamino)sulfonium difluorotrimethyl silicate, tetrabutylammonium fluoride, tris(piperidino)sulfonium difluoride, tetraalkylammonium bifluorides and tetraarylphosphonium bifluorides.
- 28. The process of claim 27 wherein the molar ratio of bis(silyl) ether to catalyst is from 4 to 10,000.
- 29. The process of claim 28 wherein the molar ratio of perfluoroolefin to bis(silyl) ether is from 0.9 to 2.5.
- 30. The process of claim 29 wherein the concentration of bis(silyl)ether in solution is from 0.001M to 0.1M.
- 31. A process for preparing the macrocyclic compound of the structure:
- [C(R.sub.f.sup.1).dbd.C(R.sub.f.sup.2)ORO].sub.w (c)
- wherein R.sub.f.sup.1 and R.sub.f.sup.2 are R.sub.f.sup.1 and R.sub.f.sup.2 are independently --C.sub.z F.sub.2z+1, wherein z is an integer from 1 to 10; or R.sub.f.sup.1 and R.sub.f.sup.2 taken together where R.sub.f.sup.1 and R.sub.f.sup.2 in the cis configuration are --(CF.sub.2).sub.m --, wherein m is 2, 3 or 4, provided that when R.sub.f.sup.1 and R.sub.f.sup.2 are as defined, then R shall not be --CH.sub.2 (CF).sub.s CH.sub.2 -- where s is an integer from 1 to 12, C.sub.6 F.sub.5 --, C.sub.10 F.sub.7 -- or C.sub.12 F.sub.9 --, wherein w=2 or 4, comprising reacting a bis(vinyl)ether of the formula R.sub.f.sup.1 (F)C.dbd.C(R.sub.f.sup.2)ORO(R.sub.f.sup.2)C.dbd.C(F)R.sub.f.sup.1 with a bis(silyl) ether of the formula R.sup.2 R.sup.3 R.sup.4 SiOROSiR.sup.5 R.sup.6 R.sup.7 in dilute solution in a solvent and in the presence of a catalyst, at a temperature of -50.degree. C. to 120.degree. C., wherein R.sup.1 is --CH.sub.2-f R.sub.f, wherein f is 0 or an integer from 1 to 2x; and wherein R.sub.f.sup.1 and R.sub.f.sup.2 are independently --C.sub.z F.sub.2z+1, wherein z is an integer from 1 to 10; or R.sub.f.sup.1 and R.sub.f.sup.2 taken together where R.sub.f.sup.1 and R.sub.f.sup.2 in the cis configuration are --(CF.sub.2).sub.m --, wherein m is 2, 3 or 4, provided that when R.sub.f.sup.1 and R.sub.f.sup.2 are as defined, then R shall not be --CH.sub.2 (CF).sub.s CH.sub.2 -- where s is an integer from 1 to 12, C.sub.6 F.sub.5 --, C.sub.10 F.sub.7 -- or C.sub.12 F.sub.9 --; and wherein R is a diradical of the formula
- --C.sub.x H.sub.2x-y F.sub.y -- where x is an integer from 2 to 20, y is 0 or an integer from 1 to 2x for a given value of x, but with the additional proviso that the carbon atoms containing the free valence of the diradical not be attached to fluorine atoms, and when x is a integer from 4 to 20 some of the carbon atoms may be internally interrupted with oxygen atoms forming ether structures and with the proviso that the oxygen atoms be separated by two or more carbon atoms; --CH.sub.4-a F.sub.a --, wherein a is 0, 1, 2, 3, or 4;
- --C.sub.10 H.sub.6-b F.sub.b --, wherein b is 0 or an integer from 1 to 6, with the proviso that the radical bonds are not on adjacent carbon atoms; --C.sub.12 H.sub.8-c F.sub.c --, wherein c is 0 or an integer from 1 to 8, with the proviso that the radical bonds are not on adjacent carbon atoms; and --CH.sub.4-d F.sub.d --R.sup.1 --CH.sub.4-e F.sub.e --, wherein d and e are independently 0 or an integer from 1 to 4, R.sup.1 is --CH.sub.2-f R.sub.f --, wherein f is 0 or an integer from 1 to 2x; and R.sub.f.sup.1, R.sub.f.sup.2, are independently --C.sub.z F.sub.2z+1, wherein z is an integer from 1 to 10; or R.sub.f.sup.1 and R.sub.f.sup.2 taken together where R.sub.f.sup.1 and R.sub.f.sup.2 in the cis configuration are --(CF.sub.2) .sub.m --, wherein m is 2, 3 or 4, provided that when R.sub.f.sup.1 and R.sub.f.sup.2 are as defined, then R shall not be --CH.sub.2 (CF).sub.s CH.sub.2 -- where s is an integer from 1 to 12, C.sub.6 F.sub.5 --, C.sub.10 F.sub.7 -- or C.sub.12 F.sub.9 --, and w is 1, 2, 3 or 4.
- 32. A process for preparing A macrocyclic compound of the structure: ##STR62## wherein R.sub.f.sup.1 is --C.sub.z F.sub.2z+1, wherein z is an integer from 1 to 10, R.sup.8 is R and R is a diradical of the formula --C.sub.x H.sub.2x-y F.sub.y -- where x is an integer from 2 to 20, y is 0 or an integer from 1 to 2x for a given value of x, but with the additional proviso that the carbon atoms containing the free valence of the diradical not be attached to fluorine atoms, and when x is a integer from 4 to 20 some of the carbon atoms may be internally interrupted with oxygen atoms forming ether structures and with the proviso that the oxygen atoms be separated by two or more carbon atoms; --CH.sub.4-a F.sub.a --, wherein a is 0, 1, 2, 3, or 4;
- --C.sub.10 H.sub.6-b F.sub.b --, wherein b is 0 or an integer from 1 to 6, with the proviso that the radical bonds are not on adjacent carbon atoms; --C.sub.12 H.sub.8-c F.sub.c --, wherein c is 0 or an integer from 1 to 8, with the proviso that the radical bonds are not on adjacent carbon atoms; and --CH.sub.4-d F.sub.d --R.sup.1 --CH.sub.4-e F.sub.e --, wherein d and e are independently 0 or an integer from 1 to 4, R.sup.1 is --CH.sub.2-f F.sub.f --, wherein f is 0 or an integer from 1 to 2x;
- and w is 1, 2, 3 or 4, comprising:
- reacting a bis(silyl)ether of the structure R.sup.2 R.sup.3 R.sup.4 SiOROSiR.sup.5 R.sup.6 R.sup.7 with a perfluoroolefin of the structure R.sub.f.sup.1 (F)C.dbd.CF.sub.2 in dilute solution in solvent and in the presence of a catalyst at a temperature of -50.degree. C. to 120.degree. C., wherein R.sub.f.sup.1 is --C.sub.z F.sub.2z+1, wherein z is an integer from 1 to 10, and wherein R.sup.2, R.sup.3, R.sup.4, R.sup.5 R.sup.6, R.sup.7 are independently CH.sub.3 -- or C.sub.2 H.sub.5 -- or one of R.sup.2, R.sup.3, R.sup.4, R.sup.5 R.sup.6, and R.sup.7 may be C.sub.6 H.sub.5 -- with the remainder of the groups being independently CH.sub.3 -- or C.sub.2 H.sub.5 --.
- 33. The process of claim 32 wherein the catalyst is CsF, tris(dialkylamino)sulfonium difluorotrimethyl silicate, tetrabutylammonium fluoride, tris(piperidino)sulfonium difluoride, tetraalkylammonium bifluorides and tetraarylphosphonium bifluorides.
- 34. The process of claim 33 wherein the solvent is selected from the group consisting of glyme and tetrahydrofuran.
- 35. A process for preparing a bis(vinyl) ether of formula D of the structure:
- R.sub.f.sup.1 (F)C.dbd.C(R.sub.f.sup.2)OROC(R.sub.f.sup.2).dbd.C(F)R.sub.f.sup.1 (D),
- wherein: R is a diradical of the formula --C.sub.x H.sub.2x-y F.sub.y -- where x is an integer from 2 to 20, y is 0 or an integer from 1 to 2x for a given value of x, but with the additional proviso that the carbon atoms containing the free valence of the diradical not be attached to fluorine atoms, and when x is a integer from 4 to 20 some of the carbon atoms may be internally interrupted with oxygen atoms forming ether structures and with the proviso that the oxygen atoms be separated by two or more carbon atoms;
- --CH.sub.4-a F.sub.a --, wherein a is 0, 1, 2, 3, or 4;
- --C.sub.10 H.sub.6-b F.sub.b --, wherein b is 0 or an integer from 1 to 6, with the proviso that the radical bonds are not on adjacent carbon atoms; --C.sub.12 H.sub.8-c F.sub.c --, wherein c is 0 or an integer from 1 to 8, with the proviso that the radical bonds are not on adjacent carbon atoms; and
- --CH.sub.4-d R.sub.d --R.sup.1 --CH.sub.4-e F.sub.e --, wherein d and e are independently 0 or an integer from 1 to 4, R.sup.1 is --CH.sub.2-f F.sub.f --, wherein f is 0 or an integer from 1 to 2x;
- R.sub.f.sup.1 and R.sub.f.sup.2 are independently --C.sub.z F.sub.2z+1, wherein z is an integer from 1 to 10; or R.sub.f.sup.1 and R.sub.f.sup.2 taken together where R.sub.f.sup.1 and R.sub.f.sup.2 in the cis configuration are --(CF.sub.2).sub.m --, wherein m is 2, 3 or 4, provided that when R.sub.f.sup.1 and R.sub.f.sup.2 are as defined, then R shall not be --CH.sub.2 (CF).sub.s CH.sub.2 -- where s is an integer from 1 to 12, C.sub.6 F.sub.5 --, C.sub.10 F.sub.7 -- or C.sub.12 F.sub.9 --, comprising, reacting a bis(silyl) ether of the formula R.sup.2 R.sup.3 R.sup.3 SiOROSiR.sup.5 R.sup.6 R.sup.7 and perfluoroolefin of the formula R.sub.f.sup.1 (F)C.dbd.C(F)R.sub.f.sup.2 in the presence of a solvent and in the presence of a catalyst which is a source of fluoride ion, and wherein R.sup.2, R.sup.3, R.sup.4, R.sup.5 R.sup.6, R.sup.7 are independently CH.sub.3 -- or C.sub.2 H.sub.5 -- or one of R.sup.2, R.sup.3, R.sup.4, R.sup.5 R.sup.6, and R.sup.7 may be C.sub.6 H.sub.5 -- with the remainder of the groups being independently CH.sub.3 -- or C.sub.2 H.sub.5 --.
- 36. The process of claim 35 carried on in a solvent that does not react with the starting materials or solvents.
- 37. The process of claim 36 conducted within a temperature range of -50.degree. C. to 120.degree. C.
- 38. The process of claim 37 wherein R.sup.2, R.sup.3, R.sup.4, R.sup.5 R.sup.6, and R.sup.7 are methyl and R is --CH.sub.2 (CF.sub.2).sub.3 CH.sub.2 --.
- 39. The process of claim 37 wherein R.sub.f.sup.1 and R.sub.f.sup.2 are each --CH.sub.3.
- 40. A process for the preparation of
- composition R.sub.f.sup.1 (F)C.dbd.C(F)OR.sup.8 OC(F).dbd.C(F)R.sub.f.sup.1 (E),
- wherein: R.sub.f.sup.1 is --C.sub.z F.sub.2z+1, wherein z is an integer from 1 to 10;
- R.sup.8 is R and is a diradical of the formula --C.sub.x H.sub.2x-y F.sub.y -- where x is an integer from 2 to 20, y is 0 or an integer from 1 to 2x for a given value of x, but with the additional proviso that the carbon atoms containing the free valence of the diradical not be attached to fluorine atoms, and when x is a integer from 4 to 20 some of the carbon atoms may be internally interrupted with oxygen atoms forming ether structures and with the proviso that the oxygen atoms be separated by two or more carbon atoms; --CH.sub.4-a F.sub.a --, wherein a is 0, 1, 2, 3, or 4;
- --C.sub.10 H.sub.6-b F.sub.b --, wherein b is 0 or an integer from 1 to 6, with the proviso that the radical bonds are not on adjacent carbon atoms; --C.sub.12 H.sub.8-c F.sub.c --, wherein c is 0 or an integer from 1 to 8, with the proviso that the radical bonds are not on adjacent carbon atoms; and
- --CH.sub.4-d F.sub.d R.sup.1 CH.sub.4-e F.sub.e --, wherein d and e are independently 0 or an integer from 1 to 4, R.sup.1 is --CH.sub.2-f F.sub.f --, wherein f is 0 or an integer from 1 to 2x;
- comprising, a reaction of a bis(silyl)ether of the structure R.sup.2 R.sup.3 R.sup.4 SiOR.sup.8 OSiR.sup.5 R.sup.6 R.sup.7 with an excess of perfluoroolefin of the structure R.sub.f.sup.1 (F)C.dbd.CF.sub.2, in a solvent and in the presence of a catalyst, wherein R.sup.2, R.sup.3, R.sup.4, R.sup.5, R.sup.6, R.sup.7 are independently CH.sub.3 -- or C.sub.2 H.sub.5 -- or one of R.sup.2, R.sup.3, R.sup.4, R.sup.5 R.sup.6, and R.sup.7 may be C.sub.6 H.sub.5 -- with the remainder of the groups being independently CH.sub.3 -- or C.sub.2 H.sub.5 --; and wherein R.sub.f.sup.1 and R.sup.8 are as defined above.
- 41. A process for the preparation of
- R.sub.f.sup.1 R.sub.f.sup.2 C.dbd.C(R.sub.f.sup.6)OR.sup.8 OC(R.sub.f.sup.6).dbd.CR.sub.f.sup.2 R.sub.f.sup.1 (E')
- wherein: R.sub.f.sup.1 and R.sub.f.sup.2 are independently --C.sub.z F.sub.2z+1, wherein z is an integer from 1 to 10; or R.sub.f.sup.1 and R.sub.f.sup.2 taken together where R.sub.f.sup.1 and R.sub.f.sup.2 are in the cis configuration are --(CF.sub.2).sub.m --, wherein m is 2, 3 or 4, C.sub.6 F.sub.5 --, C.sub.10 F.sub.7 -- or C.sub.12 F.sub.9 ; and each R.sub.f.sup.6 is independently the same as R.sub.f.sup.1, comprising a reaction of R.sup.2 R.sup.3 R.sup.4 SiOR.sup.8 OSiR.sup.5 R.sup.6 R.sup.7 with an excess of perfluoroolefin of the formula structure R.sub.f.sup.1 (F)C.dbd.CF.sub.2, in a solvent and in the presence of a catalyst, wherein R.sup.2, R.sup.3, R.sup.4, R.sup.5 R.sup.6, R.sup.7 are independently CH.sub.3 -- or C.sub.2 H.sub.5 -- or one of R.sup.2, R.sup.3, R.sup.4, R.sup.5 R.sup.6, and R.sup.7 may be C.sub.6 H.sub.5 -- with the remainder of the groups being independently CH.sub.3 -- or C.sub.2 H.sub.5 -- and R.sup.8 is a diradical of the formula --C.sub.x H.sub.2x-y F.sub.y -- where x is an integer from 2 to 20, y is 0 or an integer from 1 to 2x for a given value of x, but with the additional proviso that the carbon atoms containing the free valence of the diradical not be attached to fluorine atoms, and when x is a integer from 4 to 20 some of the carbon atoms may be internally interrupted with oxygen atoms forming ether structures and with the proviso that the oxygen atoms be separated by two or more carbon atoms; --CH.sub.4-a F.sub.a --, wherein a is 0, 1, 2, 3, or 4; --C.sub.10 H.sub.6-b F.sub.b --, wherein b is 0 or an integer from 1 to 6, with the proviso that the radical bonds are not on adjacent carbon atoms; --C.sub.12 H.sub.8-c F.sub.c --, wherein c is 0 or an integer from 1 to 8, with the proviso that the radical bonds are not on adjacent carbon atoms; and --CH.sub.4-d F.sub.d --R.sup.1 --CH.sub.4-e F.sub.e --, wherein d and e are independently 0 or an integer from 1 to 4, R.sup.1 is --CH.sub.2-f F.sub.f --, wherein f is 0 or an integer from 1 to 2x.
- 42. The process of claim 40 or 41 wherein the catalyst is CsF.
- 43. The process of claim 40 or 41 wherein the molar ratio of perfluoroolefin to bis(silyl)ether is from 2.2 to 12.
- 44. The process of claim 40 wherein the solvent is selected from the group consisting of glyme and tetrahydrofuran.
- 45. A process for preparing a polymer consisting essentially of the repeat unit:
- --[C(.dbd.CFR.sub.f.sup.1)OR.sup.8 O]-- (B)
- comprising, reacting a bis(silyl)ether of the structure R.sup.2 R.sup.3 R.sup.4 SiOR.sup.8 OSiR.sup.5 R.sup.6 R.sup.7 with a perfluoroolefin of the structure R.sub.f.sup.1 (F)CF.sub.2 or a bis(vinyl) ether of the formula R.sub.f.sup.1 (F)C.dbd.C(R.sub.f.sup.2)ORO(R.sub.f.sup.2)C.dbd.C(F)R.sub.f.sup.1 in the presence of a catalyst at a temperature of -50.degree. C. to 120.degree. C. wherein R.sub.f.sup.1 and R.sub.f.sup.2 are independently --C.sub.z F.sub.2z+1, wherein z is an integer from 1 to 10, wherein R.sup.8 is R, and R is a diradical of the formula --C.sub.x H.sub.2x-y F.sub.y -- where x is an integer from 2 to 20, y is 0 or an integer from 1 to 2x for a given value of x, but with the additional proviso that the carbon atoms containing the free valence of the diradical not be attached to fluorine atoms, and when x is a integer from 4 to 20 some of the carbon atoms may be internally interrupted with oxygen atoms forming ether structures and with the proviso that the oxygen atoms be separated by two or more carbon atoms; --CH.sub.4-a F.sub.a --, wherein a is 0, 1, 2, 3, or 4;
- --C.sub.10 H.sub.6-b F.sub.b --, wherein b is 0 or an integer from 1 to 6, with the proviso that the radical bonds are not on adjacent carbon atoms; --C.sub.12 H.sub.8-c F.sub.c --, wherein c is 0 or an integer from 1 to 8, with the proviso that the radical bonds are not on adjacent carbon atoms; and
- --CH.sub.4-d F.sub.d --R.sup.1 --CH.sub.4-e F.sub.e --, wherein d and e are independently 0 or an integer from 1 to 4, R.sup.1 is --CH.sub.2-f F.sub.f --, wherein f is 0 or an integer from 1 to 2x; wherein R.sup.8 is R and R.sup.2, R.sup.3, R.sup.4, R.sup.5, R.sup.6, R.sup.7 are wherein R.sup.2, R.sup.3, R.sup.4, R.sup.5 R.sup.6, R.sup.7 are independently CH.sub.3 -- or C.sub.2 H.sub.5 -- or one of R.sup.2, R.sup.3, R.sup.4, R.sup.5 R.sup.6, and R.sup.7 may be C.sub.6 H.sub.5 -- with the remainder of the groups being independently CH.sub.3 -- or C.sub.2 H.sub.5 --.
- 46. The process of claim 45 wherein the temperature is -20.degree. C. to +10.degree. C.
- 47. The process of claim 45 wherein the catalyst is cesium fluoride.
- 48. The process of claim 47 wherein the solvent is glyme or tetrahydrofuran.
CROSS-REFERENCE TO RELATED APPLICATION
This is a division of application Ser. No. 07/645,030, filed Jan. 23, 1991, U.S. Pat. No. 5,243,025, which is a continuation-in-part of U.S. application Ser. No. 07/243,396, filed Sep. 12, 1988 abandoned.
US Referenced Citations (3)
Foreign Referenced Citations (2)
Number |
Date |
Country |
77114 |
Apr 1983 |
EPX |
782477 |
Sep 1957 |
GBX |
Non-Patent Literature Citations (3)
Entry |
Hans R. Kricheldorf and Gerhard Bier, Journal of Polyme Science, Polymer Chemistry Edition, vol. 21, 2283-2289 (1983). |
Hans R. Kricheldorf and Gerhard Bier, Polymer, vol. 25, 1151 (1984). |
D.G. Saurders, Synthesis No. 5, Communications, 377 (1988). |
Divisions (1)
|
Number |
Date |
Country |
Parent |
645030 |
Jan 1991 |
|
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
243396 |
Sep 1988 |
|