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Correlation between morphology, water uptake, and proton conductivity in radiation-grafted proton-exchange membranes

机译:辐射接枝的质子交换膜的形态,吸水率和质子电导率之间的相关性

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摘要

An SANS investigation of hydrated proton exchange membranes is presented. Our membranes were synthesized by radiation-induced grafting of ETFE with styrene in the presence of a crosslinker, followed by sulfonation of the styrene. The contrast variation method was used to understand the relationship between morphology, water uptake, and proton conductivity. The membranes are separated into two phases. The amorphous phase hosts the water and swells upon hydration, swelling being inversely proportional to the degree of crosslinking. Hydration and proton conductivity exhibit linear dependence on swelling. Proton conductivity and volumetric fraction of water are related by a power law, indicating a percolated network of finely dispersed aqueous pores in the hydrophilic domains.
机译:提出了对水合质子交换膜的SANS研究。在交联剂存在下,通过辐射诱导的ETFE与苯乙烯的接枝反应,然后对苯乙烯进行磺化,合成了我们的膜。使用对比度变化法来了解形态,吸水率和质子电导率之间的关系。膜分为两个阶段。无定形相容纳水并且在水合时溶胀,溶胀与交联度成反比。水合和质子传导率对溶胀表现出线性依赖性。质子的电导率和水的体积分数与幂定律有关,表明在亲水域中细孔水溶液的渗透网络。

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