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含钴茂聚电解质中氢氧化物传输的理论研究。

Theoretical Examination of the Hydroxide Transport in Cobaltocenium-Containing Polyelectrolytes.

作者信息

Wickramasinghe Sachith, Hoehn Alexandria, Wetthasinghe Shehani T, Lin Huina, Wang Qi, Jakowski Jacek, Rassolov Vitaly, Tang Chuanbing, Garashchuk Sophya

机构信息

Department of Chemistry & Biochemistry, University of South Carolina, Columbia, South Carolina 29208, United States.

Department of Mathematics, University of South Carolina, Columbia, South Carolina 29208, United States.

出版信息

J Phys Chem B. 2023 Nov 30;127(47):10129-10141. doi: 10.1021/acs.jpcb.3c04118. Epub 2023 Nov 16.

Abstract

Polymers incorporating cobaltocenium groups have received attention as promising components of anion-exchange membranes (AEMs), exhibiting a good balance of chemical stability and high ionic conductivity. In this work, we analyze the hydroxide diffusion in the presence of cobaltocenium cations in an aqueous environment based on the molecular dynamics of model systems confined in one dimension to mimic the AEM channels. In order to describe the proton hopping mechanism, the forces are obtained from the electronic structure computed at the density-functional tight-binding level. We find that the hydroxide diffusion depends on the channel size, modulation of the electrostatic interactions by the solvation shell, and its rearrangement ability. Hydroxide diffusion proceeds via both the vehicular and structural diffusion mechanisms with the latter playing a larger role at low diffusion coefficients. The highest diffusion coefficient is observed under moderate water densities (around half the density of liquid water) when there are enough water molecules to form the solvation shell, reducing the electrostatic interaction between ions, yet there is enough space for the water rearrangements during the proton hopping. The effects of cobaltocenium separation, orientation, chemical modifications, and the role of nuclear quantum effects are also discussed.

摘要

含有钴茂基团的聚合物作为阴离子交换膜(AEMs)的有前景的组件受到了关注,展现出化学稳定性和高离子电导率的良好平衡。在这项工作中,我们基于在一维受限模型系统中的分子动力学来模拟AEM通道,分析了钴茂阳离子存在下在水环境中的氢氧根扩散。为了描述质子跳跃机制,力是从密度泛函紧束缚水平计算的电子结构中获得的。我们发现氢氧根扩散取决于通道尺寸、溶剂化壳对静电相互作用的调制及其重排能力。氢氧根扩散通过载体扩散和结构扩散机制进行,后者在低扩散系数时起更大作用。在适度水密度(约为液态水密度的一半)下观察到最高扩散系数,此时有足够的水分子形成溶剂化壳,减少了离子间的静电相互作用,并且在质子跳跃过程中有足够的空间进行水的重排。还讨论了钴茂间距、取向、化学修饰的影响以及核量子效应的作用。

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