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Molecular dynamics study on water and hydroxide transfer mechanisms in PSU-g-alkyl-TMA membranes at low hydration: Effect of side chain length

机译:低水合下PSU-G-烷基-TMA膜水和氢氧化物转移机制的分子动力学研究:侧链长度的影响

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Molecular dynamics simulations with anion exchange membranes (alkyl trimethyl ammonium grafted onto polysulfone) are performed to investigate the influence of the spacer length on the transport properties, on the molecular exchange mechanisms between the functional group and the aqueous phase and on the hydrogen bond network. This is especially insightful that in this work the hydration number is small. In this condition the aqueous phase must be thought as an assembly of small clusters. The results show an unexpected dependence of the water and hydroxide (OH) diffusivity on the temperature and the water uptake. The distribution of the cluster size bonded to OH explain partially the OH diffusivity. "Hopping" and "caging" motions are observed with the self-part of the Van Hove functions even at high temperature. The characteristic time of the survival probability correlation function around the functional groups is a decreasing function of the alkyl length. (C) 2021 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:进行分子动力学模拟与阴离子交换膜(接枝到聚砜上)的分子动力学模拟,以研究官能团和水相和氢键网络之间的分子交换机制对运输性能对运输性能的影响。这尤其熟悉,在这项工作中,水合数量很小。在该条件下,水相必须被认为是小簇的组装。结果表明,水和氢氧化物(OH)扩散性对温度和水吸收的意外依赖性。键合至OH的簇大小的分布部分地解释OH扩散率。即使在高温下,使用Van Hove功能的自体部分观察“跳跃”和“持续”动作。官能团周围的存活概率相关功能的特征时间是烷基长度的降低。 (c)2021氢能出版物LLC。 elsevier有限公司出版。保留所有权利。

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