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Water uptake profile in a model ion-exchange membrane: Conditions for water-rich channels

机译:模型离子交换膜中的吸水曲线:富水通道的条件

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摘要

Ionic conductivity in a polymeric fuel cell requires water uptake. Previous theoretical studies of water uptake used idealized parameters. We report a parameter-free prediction of the water-swelling behavior of a model fuel cell membrane. The model polymers, poly(methyl-butylene)-block-poly(vinylbenzyl-trimethylamine), form lamellar domains that absorb water in humid air. We use the Scheutjens-Fleer methodology to predict the resulting change in lamellar structure and compare with x-ray scattering. The results suggest locally uniform water distributions. However, under conditions where a PVBTMA and water mixture phase-separate, the two phases arrange into stripes with a dilute stripe sandwiched between two concentrated stripes. A small amount of water enhances conductivity most when it is partitioned into such channels, improving fuel-cell performance. (C) 2015 AIP Publishing LLC.
机译:聚合物燃料电池中的离子电导率需要吸水。先前的吸水率理论研究使用理想化参数。我们报告模型燃料电池膜的水膨胀行为的无参数预测。模型聚合物,聚(甲基丁烯)-嵌段-聚(乙烯基苄基-三甲胺),形成层状结构域,可吸收潮湿空气中的水。我们使用Scheutjens-Fleer方法来预测层状结构的变化并与X射线散射进行比较。结果表明局部均匀的水分布。但是,在PVBTMA和水混合物相分离的条件下,两相排列成条带,稀条带夹在两条浓缩条带之间。当将少量水分配到此类通道中时,其最大程度地提高了电导率,从而改善了燃料电池的性能。 (C)2015 AIP Publishing LLC。

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