Crosslinkable fluoropolymer, crosslinked fluoropolymers and crosslinked fluoropolymer membranes
Crosslinkable polymers and crosslinked fluoropolymers are prepared from selected fluorinated dienes and monomers containing Br and I. Also disclosed are proton conductive membranes of these crosslinked fluoropolymers.
1. A crosslinkable polymer having repeating units as shown in the following formula:
wherein R F is linear or branched perfluoroalkyl group of 1 to 20 carbon atoms, optionally containing oxygen or chlorine;
R′ F is linear or branched perfluoroalkyl group of 1 to 20 carbon atoms;
n, m, x and y are the number of repeating units of the monomers; and wherein n+m is from about 80-95 mole %, x is from about 5-15 mole % and y is from about 1-5 mole %, and
X is Br or I.
2. The crosslinkable polymer of claim 1 wherein X is Br.
3. The crosslinkable polymer of claim 1 wherein X is I.
4. The polymer of claim 1 further comprising one or more repeating units derived from a comonomer selected from the group consisting of optionally substituted hexafluoropropylene, perfluoro(methyl vinyl ether), perfluoro(propyl vinyl ether), methyl vinyl ether, chlorotrifluoroethylene, perfluoro(2,2-dimethyl-1,3-dioxole) and propylene.
5. A crosslinked polymer formed by reaction of the X groups of the crosslinkable polymer of claim 1 in the presence of a coagent comprised of a triene and a free radical initiator.
6. A proton conductive membrane formed from the crosslinked polymer formed by the crosslinkable polymer of formula (1) of claim 1 ; wherein the R F SO 2 F groups have been converted by hydrolysis to R F SO 3 M groups, and wherein M is independently H, an alkali cation, ammonium or substituted ammonium groups.
7. An electrochemical cell comprising the proton conductive membrane of claim 6 .
8. The electrochemical cell of claim 7 that is a fuel cell.
9. A crosslinkable polymer having repeating units as shown in the following formula:
wherein R F is linear or branched perfluoroalkyl group of 1 to 20 carbon atoms, optionally containing oxygen or chlorine;
R′ F is linear or branched perfluoroalkyl group of 1 to 20 carbon atoms; n, m, x and y are the number of repeating units of the monomers; and wherein n+m is from about 80-95 mole %, x is from about 5-15 mole % and y is from about 1-5 mole.
10. A crosslinked polymer formed by reaction of the I groups of the crosslinkable polymer of claim 9 in the presence of a coagent comprised of a triene and a free radical initiator.
11. A proton conductive membrane formed from the crosslinked polymer formed by the crosslinkable polymer of formula (4) of claim 9 ; wherein the R F SO 2 F groups have been converted by hydrolysis to R F SO 3 M groups, and wherein M is independently H, an alkali cation, ammonium or substituted ammonium groups.