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The Implications of Cation Clustering in Anion Exchange Membranes on Conductivity and Mechanical Properties

机译:阳离子聚类在阴离子交换膜上导电性和力学性能的影响

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Anion exchange membranes (AEMs) contain cations that act as dipoles. The dipoles interact with each other and give rise to clustering in the AEM and this clustering can affect the ionic conductivity and mechanical properties of the polymer. Polymers designed to have dispersed cations can, when wet, have their cations cluster as the material undergoes an order-disorder transition at some temperature at which the system has enough energy to reorganize. Clustering is often unavoidable in AEMs and imposes a limit on the increase in conductivity that can be achieved by increasing IEC. Above a certain IEC AEMs do not show increased ionic conductivity only increased swelling on exposure to higher RH. Understanding these phenomena is essential to designing high performance AEMs. Here we propose an AEM based on a scalable random copolymer with rapidly deployed photo-crosslinking to lock the morphology in place to avoid cation clustering.
机译:阴离子交换膜(AEMS)包含充当偶极子的阳离子。偶极孔彼此相互作用,并导致AEM中的聚类,并且该聚类可以影响聚合物的离子电导率和机械性能。当材料在系统具有足够的能量以重新组织的情况下,设计具有它们的阳离子簇,设计具有分散阳离子的聚合物可以使其阳离子簇进行阳离子簇。聚类通常是不可避免的AEM,并对通过增加IEC可以实现的导电性的增加限制。在某个IEC AEM上方没有显示出增加的离子电导率,只有在暴露于更高的RH时才会增加肿胀。了解这些现象对于设计高性能AEM是必不可少的。在这里,我们提出了一种基于可扩展的随机共聚物的AEM,迅速展开的光交联,以锁定形态以避免阳离子聚类。

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