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Impact of cross-linking of polymers on transport of salt and water in polyelectrolyte membranes: A mesoscopic simulation study

机译:聚合物交联对聚电解质膜中盐和水运输的影响:介绍模拟研究

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Our recent atomistic simulation studies demonstrated that the transport properties of salt ions and water in non-crosslinked polymer electrolyte membrane exhibit an intriguing dependence on salt concentration that is opposite to that seen in electrolyte solutions. Here, we extend our study to probe the influence of the degree of cross-linking of the polymer on the transport properties of salt and water in polymer electrolyte membranes. Towards this objective, we use a coarse-grained model embedded within dissipative particle dynamics (DPD) mesoscale simulations, which allows us to access time scales necessary for studying crosslinked polymer systems. Our DPD simulations on non-crosslinked membranes reproduce results that are in qualitative agreement with our atomistic simulations. For the case of crosslinked membranes, our results demonstrate that the diffusion of salt ions and water is reduced significantly relative to crosslinked systems. However, the trends exhibited by the salt concentration dependence of diffusivities and the coordination of the cations with anions and with the polymer backbone remain qualitatively similar to those observed in non-crosslinked membranes. Published by AIP Publishing.
机译:我们最近的原子模拟研究表明,非交联聚合物电解质膜中的盐离子和水的运输性质表现出对与电解质溶液中所见相反的盐浓度的有趣依赖性。在这里,我们扩展了我们的研究,以探讨聚合物对聚合物电解质膜中盐和水的运输性能的影响。朝向这种目标,我们使用嵌入在耗散粒子动力学(DPD)Mescle模拟中的粗粒模型,这使我们可以访问研究交联聚合物系统所需的时间尺度。我们对非交联膜的DPD模拟与我们原子模拟的定性协议中的结果繁殖。对于交联膜的情况,我们的结果表明盐离子和水的扩散相对于交联的系统显着降低。然而,扩散性的盐浓度依赖性和阳离子与阴离子和聚合物主链的协调表现出的趋势仍然与非交联膜中观察到的那些类似。通过AIP发布发布。

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