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The role of fluid-wall interactions on confined liquid diffusion using Mori theory

机译:森理论在流体壁相互作用对密闭液体扩散中的作用

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The dynamics of fluid confined in a nano-channel with smooth walls have been studied through velocity autocorrelation function within the memory function approach by incorporating the atomic level interactions of fluid with the confining wall. Expressions for the second and fourth sum rules of velocity autocorrelation have been derived for nano-channel which involves fluid-fluid and fluid-wall interactions. These expressions, in addition, involve pair correlation function and density profiles. The numerical contributions of fluid-wall interaction to sum rules are found to play a very significant role, specifically at smaller channel width. Results obtained for velocity autocorrelation and self-diffusion coefficient of a fluid confined to different widths of the nanochannel have been compared with the computer simulation results. The comparison shows a good agreement except when the width of the channel is of the order of two atomic diameters, where it becomes difficult to estimate sum rules involving the triplet correlation's contribution. (C) 2015 AIP Publishing LLC.
机译:通过将流体与约束壁的原子级相互作用结合在一起,通过记忆函数方法中的速度自相关函数研究了约束在具有光滑壁的纳米通道中的流体动力学。对于涉及流体-流体和流体-壁相互作用的纳米通道,已经推导了速度自相关的第二和第四和规则的表达式。这些表达式还涉及对相关函数和密度分布。发现流体-壁相互作用对求和规则的数值贡献起着非常重要的作用,特别是在较小的通道宽度上。已将限制在纳米通道不同宽度的流体的速度自相关和自扩散系数获得的结果与计算机仿真结果进行了比较。该比较显示出很好的一致性,除了当通道的宽度为两个原子直径的量级时,在此很难估计涉及三重态相关性贡献的和规则。 (C)2015 AIP Publishing LLC。

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