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Proton conductivity improvement of polymer electrolyte membrane using nano-scale explosion of water in the membrane

机译:利用膜中水的纳米级爆炸提高聚合物电解质膜的质子电导率

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摘要

Proton conductivity of polymer electrolyte membrane (PEM) is greatly governed by the amount and distribution of water as well as morphology and alignment of hydrophilic channels forming the ion cluster network in the PEM. However, The water in PEM during hot-pressing above the glass-transition temperature of PEM and the boiling point of water has not been expected to influence the proton conductivity. Here we show that higher water amount of PEMs during the hot-pressing process results in better fuel cell performance due to shortcut-proton-pathways generated by the sudden water explosion on the nano-scale. Our results demonstrate a new post-PEM-processing method to enhance proton conductivity without additional tool/procedure, and provide some clues to the behavior of liquid molecules embedded on the nano-scale in polymers. This may open a new door to nano-scale explosion of water and/or other small liquid molecules for morphological change of pores/channels in polymer. (C) 2016 Elsevier B.V. All rights reserved.
机译:聚合物电解质膜(PEM)的质子传导性受水的数量和分布以及形成PEM中离子簇网络的亲水通道的形态和排列的支配。然而,尚未预料到在高于PEM的玻璃化转变温度和水的沸点的温度下热压时PEM中的水会影响质子传导率。在这里,我们表明,在热压过程中,PEM的水含量较高,这是由于纳米级突然水爆炸产生的捷径质子路径导致了更好的燃料电池性能。我们的结果证明了一种新的后PEM处理方法,无需额外的工具/程序即可提高质子传导性,并为嵌入纳米级聚合物中的液体分子的行为提供了一些线索。这可能为水和/或其他小的液体分子的纳米级爆炸打开新的大门,以爆炸聚合物中孔/通道的形态。 (C)2016 Elsevier B.V.保留所有权利。

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