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Computational modeling of structure and OH-anion diffusion in quaternary ammonium polysulfone hydroxide–Polymer electrolyte for application in electrochemical devices

机译:季铵盐聚砜氢氧化物-聚合物电解质在电化学装置中的结构和OH-阴离子扩散的计算模型

摘要

Using computational approaches we predict the microstructure of high-performance alkaline polymer, quaternary ammonium polysulfone hydroxide (QAPS-OH) membranes, dry and with ∼14 wt% water uptake. The microstructure can be described as a hydrophobic polymer backbone penetrated by a network of three-dimensional interlinked hydrophilic channels of different diameters. Mobile OH-anions are distributed inside the channels. OH diffusion coefficients and corresponding activation energy were calculated from our molecular dynamics simulations of the QAPS-OH membrane at different temperatures. The predicted values are consistent with available experimental data. Possible mechanisms of the OH-anion diffusion have been discussed.
机译:使用计算方法,我们可以预测高性能碱性聚合物,季铵化聚砜氢氧化物(QAPS-OH)膜的干燥状态,其吸水率约为14 wt%。微观结构可以描述为疏水性聚合物骨架,该骨架被不同直径的三维互连亲水通道的网络穿透。流动的OH阴离子分布在通道内。从我们在不同温度下对QAPS-OH膜的分子动力学模拟计算出OH扩散系数和相应的活化能。预测值与可用的实验数据一致。讨论了OH-阴离子扩散的可能机理。

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