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Synthesis of highly fluorinated poly(arylene ether)s copolymers for proton exchange membrane materialsopen access

Authors
Kim, Dae SikRobertson, Gilles P.Guiver, Michael D.Lee, Young Moo
Issue Date
Sep-2006
Publisher
ELSEVIER
Keywords
fluorinated poly(arylene ether)s; proton conductivity; methanol permeability; fuel cell
Citation
JOURNAL OF MEMBRANE SCIENCE, v.281, no.1-2, pp.111 - 120
Indexed
SCIE
SCOPUS
Journal Title
JOURNAL OF MEMBRANE SCIENCE
Volume
281
Number
1-2
Start Page
111
End Page
120
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/181066
DOI
10.1016/j.memsci.2006.03.020
ISSN
0376-7388
Abstract
Highly fluorinated poly(arylene ether)s containing sulfonic acid groups meta to ether linkage (SPAE), intended for fuel cell applications as proton electrolyte membrane materials, were synthesized by potassium carbonate mediated nucleophilic polycondensation reactions of commercially available monomers: 2,8-dihydroxynaphthalene-6-sulfonated salt (2,8-DHNS-6), hexafluorobisphenol A (6F-BPA), and decafluorobiphenyl (DFBP) in dimethylsulfoxide (DMSO) at 160-170 degrees C. FT-IR and H-1 NMR were used to characterize the structures. The sulfonate or sulfonic acid contents (SC), expressed as a number per repeat unit of polymer and ranged from 0 to 0.79, were calculated from F-19 NMR. The proton conductivities of acid form membrane increased with SC value and reached 0.103 S/cm at 90 degrees C for SPAE 80. The methanol permeabilities ranged from 7.4 x 10(-7) to 2.2 x 10(-9) cm/s at 30 degrees C and were lower than those of other conventional sulfortated ionomer membranes, particularly commercial perfluorinated sulfonated ionomer (Nation).
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