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Molecular dynamics simulation analysis of hydration effects on microstructure and transport dynamics in sulfonated poly(2,6-dimethyl-1,4-phenylene oxide) fuel cell membranes

机译:水合作用对磺化聚(2,6-二甲基-1,4-苯撑氧)燃料电池膜微观结构和传输动力学的分子动力学模拟分析

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摘要

Molecular dynamics simulations were used to study microstructure and transport behavior of hydrated sulfonated poly(2,6-dimethyl-l,4-phenylene oxide) (SPPO) membranes at different hydration levels. Simulation results have shown that SPPO membranes swell upon hydration and become phase segregated into hydrophobic and hydrophilic domains with sulfonic acid groups located at their interface. Evaluation of radial distribution function revealed that with increasing the hydration level, sulfonic acid groups were found to be solvated with more water molecules which cause the sulfonic acid-sulfonic acid and sulfonic acid-hydronium ion distances to increase. By examining the water cluster size distribution, larger well connected clusters containing almost all the water molecules and hydronium ions were formed inside the hydrated SPPO membranes at increased water contents. Furthermore, the calculated hydronium ion and water diffusion coefficients in SPPO based membranes were increased by increasing the hydration level and were smaller than those in Nafion membrane.
机译:分子动力学模拟用于研究水合水平下水合磺化聚(2,6-二甲基-1,4-苯撑氧)(SPPO)膜的微观结构和传输行为。模拟结果表明,SPPO膜在水合作用时会溶胀并相分离为疏水和亲水区域,其中磺酸基位于界面处。径向分布函数的评估表明,随着水合程度的增加,发现磺酸基团被更多的水分子溶剂化,这导致磺酸-磺酸和磺酸-氢离子的距离增加。通过检查水团簇的大小分布,在水含量增加的情况下,在水合的SPPO膜内形成了包含几乎所有水分子和水合氢离子的较大连通的团簇。此外,通过增加水合水平,在SPPO基膜中计算得到的水合氢离子和水扩散系数增加,并且比在Nafion膜中小。

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