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Durable Sulfonated Poly(benzothiazole-co-benzimidazole) Proton Exchange Membranes

Authors
Wang, GangLee, Kang HyuckLee, Won HyoShin, Dong WonKang, Na RaeCho, Doo HeeHwang, Doo SungZhuang, YongbingLee, Young MooGuiver, Michael D.
Issue Date
Sep-2014
Publisher
AMER CHEMICAL SOC
Citation
MACROMOLECULES, v.47, no.18, pp.6355 - 6364
Indexed
SCIE
SCOPUS
Journal Title
MACROMOLECULES
Volume
47
Number
18
Start Page
6355
End Page
6364
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/133978
DOI
10.1021/ma501409v
ISSN
0024-9297
Abstract
Two series of random sulfonated poly-(benzothiazole-co-benzimidazole) polymers (sPBT-BI) with 70% and 60% degree of sulfonation were evaluated as proton exchange membranes. sPBT was also prepared for a comparative study. The mechanical properties of sPBT-BI 73 were greatly enhanced by incorporation of benzimidazole (BI); sPBT-BI70-10 showed a tensile strength of 125 MPa and elongation at break of 38.9%, an increase of 56.5% and 145%, respectively, compared with sPBT. The solubility, dimensional stability, thermal properties, and oxidative stability of sPBT-BI were also improved. The ionic clusters of sPBT-BI membranes in both AFM phase images and TEM images became narrower Time (A) with increasing amounts of BI while containing the same molar amount of sulfonic acid groups. This resulted in lower dimensional swelling and higher mechanical strength, but the proton conductivity decreased. However, high proton conductivity was achieved by incorporating an appropriate content of BI. PEMFC H-2/air single cell performances and durabilities were improved by incorporation of 5% of BI units in sPBT.
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