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Understanding the influence of capillary waves on solvation at the liquid-vapor interface

机译:了解毛细管波对液-气界面处溶剂化的影响

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This work investigates the question if surface capillary waves (CWs) affect interfacial solvation thermodynamic properties that determine the propensity of small molecules toward the liquid-vapor interface. We focus on (1) the evaluation of these properties from molecular simulations in a practical manner and (2) understanding them from the perspective of theories in solvation thermodynamics, especially solvent reorganization effects. Concerning the former objective, we propose a computational method that exploits the relationship between an external field acting on the liquid-vapor interface and the magnitude of CWs. The system considered contains the solvent, an externally applied field (f) and the solute molecule fixed at a particular location. The magnitude of f is selected to induce changes in CWs. The difference between the solvation free energies computed in the presence and in the absence of f is then shown to quantify the contribution of CWs to interfacial solvation. We describe the implementation of this method in the canonical ensemble by using a Lennard-Jones solvent and a non-ionic solute. Results are shown for three types of solutes that differ in the nature of short-ranged repulsive (hard-core) interactions. Overall, we observe that CWs have a negligible or very small effect on the interfacial solvation free energy of a solute molecule fixed near the liquid-vapor interface for the above systems. We also explain how the effects of pinning or dampening of CWs caused by a fixed solute are effectively compensated and do not contribute to the solvation free energy. (C) 2016 AIP Publishing LLC.
机译:这项工作研究了表面毛细波(CW)是否影响界面溶剂化热力学性质的问题,该热力学性质决定了小分子朝向液-气界面的倾向。我们着重于(1)以实用的方式通过分子模拟评估这些特性,以及(2)从溶剂化热力学理论尤其是溶剂重组效应的理论角度理解它们。关于前一个目标,我们提出了一种计算方法,该方法利用了作用于液-汽界面的外场与连续波幅度之间的关系。所考虑的系统包含溶剂,外部施加的电场(f)和固定在特定位置的溶质分子。选择f的大小以引起CW的变化。然后显示存在和不存在f时计算得出的溶剂化自由能之间的差异,以量化CW对界面溶剂化的贡献。我们描述了通过使用Lennard-Jones溶剂和非离子溶质在规范集合中实现此方法的方法。结果显示了三种类型的溶质,它们在短程排斥(硬核)相互作用的性质上不同。总的来说,我们观察到连续波对上述系统固定在液-气界面附近的溶质分子的界面溶剂化自由能的影响很小或很小。我们还解释了如何通过固定溶质有效地补偿CW的钉扎或阻尼效应,而不对溶剂化自由能产生影响。 (C)2016 AIP出版有限责任公司。

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