Perfluorosulfonyl monomers suitable for fluoropolymers and fuel cell membrane articles
Presently described is a monomer having the formula: wherein n ranges from 2 to 8; Y is F or C m F 2m+1 ; a is 0, or averages 1 to 2; m is independently 1, 2, 3, or 4; and X is F or OH. Also described is a method of making such monomer, various compounds prepared during while making the monomer, fluoropolymers comprising polymerized units of such monomer, fuel cell membranes, membrane electrode assemblies, and methods of making fluoropolymers.
1. A monomer of the formula:
wherein
n ranges from 2 to 8;
Y is F or C m F 2m+1 ;
a is 0, or averages 1 to 2;
m is independently 1, 2, 3, or 4; and
X is F or OH.
2. The monomer of claim 1 wherein m is 1.
3. The monomer of claim 1 wherein a is 0.
4. The monomer of claim 1 wherein n is 2, 3, or 4.
5. The monomer of claim 1 wherein the energy barrier to abstract a fluorine atom by a hydrogen atom (H·) from C m F 2m+1 of the ethylenically unsaturated group is greater than the energy barrier to abstract a fluorine atom from C m F 2m+1 , wherein m is 0.
6. A fluoropolymer comprising polymerized units of the monomer according to claim 1 .
7. The fluoropolymer of claim 6 , wherein the polymer comprises polymerized units of at least one other ethylenically unsaturated comonomer.
8. The fluoropolymer of claim 7 wherein the polymer comprises polymerized units of at least one other fluorinated ethylenically unsaturated comonomer.
9. The fluoropolymer of claim 8 wherein the other fluorinated ethylenically unsaturated comonomer comprises TFE.
10. A fuel cell membrane comprising a support and a fluoropolymer according to claim 6 .
11. The fuel cell membrane of claim 10 wherein the support comprises a nanofiber or expanded PTFE reinforcing material.
12. A membrane electrode assembly comprising the fuel cell membrane of claim 10 .
13. A method of making a fluoropolymer comprising:
emulsifying the monomer according to claim 1 in an aqueous liquid;
optionally emulsifying at least one additional ethylenically unsaturated comonomer in the aqueous liquid;
charging a polymerization kettle with the aqueous liquid of emulsified monomer(s); and
heating the aqueous liquid of emulsified monomer under pressure such that the monomers polymerize forming a fluoropolymer.
14. The method of claim 13 further comprises hydrolyzing, ion exchanging with an acid, drying, and dispersing the fluoropolymer in a mixture of alcohol and water.