Claims
- 1. A diacyl peroxides having the structure I,RfCXX′(CYY′)eCF2(C═O)OO(C═O)CF2CWW′(CZZ′)e′Rf′ I wherein e and e′ are independently 0 or 1; and when e=0, at least one of X, X′ is H and any of the other X, X′ is H or F; when e′=0, at least one of W, W′ is H and any of the other W, W′ is H or F; when e=1, at least one of X, X′, Y, Y′ is H and any of the other X, X′, Y, Y′ is H or F; when e′=1, at least one of W, W′, Z, Z′ is H and any of the other W, W′, Z, Z′ is H or F; wherein RfCnF(2n+1), n=1 to 4; and wherein Rf′=CmF(2m+1), m=1 to 4.
- 2. The diacyl peroxide of claim 1 wherein n and m, independently, are 1 or 4.
- 3. A method for preparing a new class of diacyl peroxides, comprising:contacting at least one acid halide of the formula II RCXX′(CYY)eCF2(C═O)L II wherein e=0 or 1, and when e=0, at least one of X, X′ is H and any of the other X, X′ is H or F, and when e=1, at least one of X, X′, Y, Y′ is H and any of the other X, X′, Y, Y′ is H or F; wherein L is Cl or F, and wherein R is Rf or Rf′; and wherein Rf=CnF(2n+1), n=1 to 4 and Rf′=CmF(2m+1), m=1 to 4; with a peroxide, to generate a diacyl peroxide of the structureRfCXX′(CYY′)eCF2(C═O)OO(C═O)CF2CWW′(CZZ′)e′Rf′ I wherein e and e′ are independently 0 or 1; and when e=0, at least one of X, X′ is H and any of the other X, X′ is H or F; when e′=0, at least one of W, W′ is H and any of the other W, W′ is H or F; when e=1, at least one of X, X′, Y, Y′ is H and any of the other X, X′, Y, Y′ is H or F; when e′=1, at least one of W, W′, Z, Z′ is H and any of the other W, W′, Z, Z′ is H or F; wherein Rf=CnF(2n+1), n=1 to 4; and wherein Rf′=CmF(2m+1), m=1to 4.
- 4. The method according to claim 3 wherein the peroxide is selected from the group consisting of H2O2 added in the presence of a base, Na2O2, and K2O2.
- 5. The method according to claim 4 wherein the base is selected from the group consisting of NaOH, KOH, Na2CO3, and K2CO3.
- 6. A method for using a diacyl peroxide of the structure I, comprising:RfCXX′(CYY′)eCF2(C═O)OO(C═O)CF2CWW′(CZZ′)e′Rf′ I wherein e and e′ are independently 0 or 1; and when e=0, at least one of X, X′ is H and any of the other X, X′ is H or F; when e′=0, at least one of W, W′ is H and any of the other W, W′ is H or F; when e=1, at least one of X, X′, Y, Y′ is H and any of the other X, X′, Y, Y′ is H or F; when e′=1, at least one of W, W′, Z, Z′ is H and any of the other W, W′, Z, Z′ is H or F; wherein Rf=CnF(2n+1), n=1 to 4; and wherein Rf′=CmF(2m+1) m=1 to 4 (i) contacting at least one diacyl peroxide having the structure I with a monomer; (ii) optionally, in the presence of a reaction medium selected from the group consisting of fluorocarbon, chlorofluorocarbons and hydrocarbon fluids; fluorocarbon, chlorofluorocarbon and hydrocarbon mixed with water, wherein hybrid polymerization conditions form; and liquid or supercritical carbon dioxide; and (iii) polymerizing the monomer, under suitable polymerization temperature and pressure whereby fluoroolefin polymerization occurs.
- 7. The method of claim 6 wherein, independently, n=1 or 4 and m=1 or 4; e=1; e′=1; and X, X′, Y, Y′, W, W′, Z and Z′ are all H.
- 8. The method of claim 6 wherein the temperature is from about −20° C. to about 30° C.
- 9. The method of claim 6 wherein the temperature is from about −10° C. to about 20° C.
- 10. The method of claim 6 wherein, independently, n=1 or 4 and wherein m=1 or 4; e=1; e′1; and X, X′, Y, Y′, W, W′, Z and Z′ are all H; and wherein the temperature is from about −10° C. to about 20° C.
- 11. A process for fluoroolefin polymerization, comprising the steps of:(i) contacting at least one diacyl peroxide having the structure I RfCXX′(CYY′)eCF2(C═O)OO(C═O)CF2CWW′(CZZ′)e′Rf′ I wherein e and e′ are independently 0 or 1; and when e=0, at least one of X, X′ is H and any of the other X, X′ is H or F; when e′ 0, at least one of W, W′ is H and any of the other W, W′ is H or F; when e=1, at least one of X, X′, Y, Y′ is H and any of the other X, X′, Y, Y′ is H or F; when e′=1, at least one of W, W′, Z, Z′ is H and any of the other W, W′, Z, Z′ is H or F; wherein Rf=CnF(2n+1), n=1 to 4; and wherein Rf′=CmF(2m+1), m 1 to 4; with a monomer; (ii) optionally, in the presence of a reaction medium selected from the group consisting of fluorocarbon, chlorofluorocarbon, hydrocarbon fluids; fluorocarbon, chlorofluorocarbon and hydrocarbon mixed with water, wherein hybrid polymerization conditions form; and liquid or supercritical carbon dioxide; and (iii) polymerizing the monomer, under suitable polymerization temperature and pressure whereby fluoroolefin polymerization occurs.
- 12. A product of the process of claim 11.
Parent Case Info
This application is a 371 of PCT/US 00/23222 filed on Aug. 24, 2000 and claims the benefit of provisional application 60/151,455 filed on Aug. 30, 1999.
PCT Information
Filing Document |
Filing Date |
Country |
Kind |
PCT/US00/23222 |
|
WO |
00 |
Publishing Document |
Publishing Date |
Country |
Kind |
WO01/16100 |
3/8/2001 |
WO |
A |
US Referenced Citations (6)
Number |
Name |
Date |
Kind |
4861845 |
Slocum et al. |
Aug 1989 |
A |
5021516 |
Wheland |
Jun 1991 |
A |
5597880 |
Abusleme et al. |
Jan 1997 |
A |
5763552 |
Feiring et al. |
Jun 1998 |
A |
5831131 |
Krespan et al. |
Nov 1998 |
A |
5962746 |
Diffendall et al. |
Oct 1999 |
A |
Provisional Applications (1)
|
Number |
Date |
Country |
|
60/151455 |
Aug 1999 |
US |