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首页> 外文期刊>The Journal of Chemical Physics >Recent progress in simulating microscopic ion transport mechanisms at liquid-liquid interfaces
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Recent progress in simulating microscopic ion transport mechanisms at liquid-liquid interfaces

机译:液液界面模拟微观离子输送机制的最新进展

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摘要

Transport of ions through liquid-liquid interfaces is of fundamental importance to a wide variety of applications. However, since it is quite challenging for experimentalists to directly and selectively observe molecules at the interfaces, microscopic mechanisms of ion transport have been largely presumed from kinetic information. This Perspective illustrates recent examples that molecular dynamics simulations with proper free energy surfaces clarified mechanistic pictures of ion transport. The key is a proper choice of coordinates and defining/calculating free energy surfaces in multidimensional space. Once the free energy surfaces for realistic systems are available, they naturally provide new insight into the ion transport in unprecedented details, including water finger, transient ion pairing, and electron transfer.
机译:离子在液-液界面的输运对于广泛的应用至关重要。然而,由于直接和有选择地观察界面上的分子对实验人员来说是一个相当大的挑战,离子传输的微观机制在很大程度上是从动力学信息中推测出来的。这一观点阐明了最近的例子,即具有适当自由能表面的分子动力学模拟阐明了离子输运的机理图片。关键是在多维空间中正确选择坐标和定义/计算自由能曲面。一旦现实系统的自由能表面可用,它们自然会以前所未有的细节提供对离子传输的新见解,包括水指、瞬态离子配对和电子转移。

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