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한국전기화학회 한국전기화학회

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Vol.19, No.2, May 2016

연료전지용 탄화수소 전해질 막의 산화안정성 향상을 위한 유기물 복합막의 제조 및 특성 분석
JKES Vol.19, No.2, pp.45-49, May 2016
DOI : 10.5229/JKES.2016.19.2.45
박샛별·이혜진·배병찬
1한국에너지기술연구원 연료전지연구실, 2과학기술연합대학원대학교 재생에너지공학
In order to mitigate oxidative degradation of polymer membrane during fuel cell operation, an organic radical quencher was introduced. Rutin was selected as a radical quencher and mixed with sulfonated poly(arylene ether sulfone) to prepare composite membrane. Physicochemical properties of the composite membranes such as water uptake and proton conductivity were characterized. Hydrogen peroxide exposure experiment, which can mimic accelerated oxidative stability test during fuel cell operation, was adopted to evaluate the oxidative stability of the membranes. The composite membranes containing Rutin showed similar proton conductivity and enhanced oxidative stability compared to pristine ones.
Keyword : Polymer electrolyte membrane, Composite membrane, Oxidative stability, Radical quencher, Rutin

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