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Spatial resolution of the electrical conductance of ionic fluids using a Green-Kubo method

机译:使用Green-Kubo方法解析离子液体的电导率

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摘要

We present a Green-Kubo method to spatially resolve transport coefficients in compositionally heterogeneous mixtures. We develop the underlying theory based on well-known results from mixture theory, Irving-Kirkwood field estimation, and linear response theory. Then, using standard molecular dynamics techniques, we apply the methodology to representative systems. With a homogeneous salt water system, where the expectation of the distribution of conductivity is clear, we demonstrate the sensitivities of the method to system size, and other physical and algorithmic parameters. Then we present a simple model of an electrochemical double layer where we explore the resolution limit of the method. In this system, we observe significant anisotropy in the wall-normal vs. transverse ionic conductances, as well as near wall effects. Finally, we discuss extensions and applications to more realistic systems such as batteries where detailed understanding of the transport properties in the vicinity of the electrodes is of technological importance. (C) 2014 AIP Publishing LLC.
机译:我们提出了一种Green-Kubo方法来空间解析组成异质混合物中的传输系数。我们基于混合理论,欧文-柯克伍德场估计和线性响应理论的著名结果来开发基础理论。然后,使用标准分子动力学技术,我们将该方法应用于代表性系统。在均质盐水系统中,对电导率分布的预期很明确,我们证明了该方法对系统尺寸以及其他物理和算法参数的敏感性。然后,我们提出了一种电化学双层的简单模型,其中我们探索了该方法的分辨率极限。在该系统中,我们观察到壁法向电导率与横向离子电导率以及壁附近效应之间存在明显的各向异性。最后,我们讨论了对更现实的系统(例如电池)的扩展和应用,其中对电极附近的传输特性的详细理解具有重要的技术意义。 (C)2014 AIP Publishing LLC。

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