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Proton exchange membranes modified with sulfonated silica nanoparticles for direct methanol fuel cells
Journal article   Peer reviewed

Proton exchange membranes modified with sulfonated silica nanoparticles for direct methanol fuel cells

Yu-Huei Su, Ying-Ling Liu, Yi-Ming Sun, Juin-Yih Lai, Da-Ming Wang, Yan Gao, Baijun Liu and Michael D. Guiver
Journal of Membrane Science, Vol.296(1-2), pp.21-28
15/06/2007

Abstract

Direct methanol fuel cell Nanoparticles Proton exchange membranes
Nanocomposite proton exchange membranes were prepared from sulfonated poly(phthalazinone ether ketone) (sPPEK) and various amounts of sulfonated silica nanoparticles (silica-SO 3 H). The use of silica-SO 3 H compensates for the decrease in ion exchange capacity of membranes observed when non-sulfonated nano-fillers are utilized. The strong -SO 3 H/-SO 3 H interaction between sPPEK chains and silica-SO 3 H particles leads to ionic cross-linking in the membrane structure, which increases both the thermal stability and methanol resistance of the membranes. The membrane with 7.5 phr of silica-SO 3 H (phr = g of silica-SO 3 H/100 g of sPPEK in membranes) exhibits low methanol crossover, high bound-water content, and a proton conductivity of 3.6 fold increase to that of the pristine sPPEK membrane. © 2007 Elsevier B.V. All rights reserved.

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