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Assessment of dynamic properties of water around a monovalent ion: A classical molecular dynamics simulation study

机译:单价离子周围水的动力学特性评估:经典分子动力学模拟研究

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摘要

Mobility change of water molecules in ionic solutions has been a long standing issue in the field of spectroscopy; however, the molecular mechanism is still controversial. To address this issue, molecular dynamics (MD) simulations are considered to be useful tools because MD simulations can provide deeper insights into dynamics of water molecules at the atomic level, compensating for the limitation of experimental observations. However, the reliability of these simulations is significant and strongly dependent on the molecular models employed. We examined the reproduction of the dynamics of water molecules under the influence of alkali and halide monovalent ions by using the framework of classical MD simulations. Conventional water models were combined with non-polarizable ion models. The decreased mobility of water molecules was reproduced in our simulations while the increased mobility could not be reproduced. However, from the examined water models, the TIP5P model can be promising to reproduce the experimental results if ion-water interactions are improved.
机译:离子溶液中水分子的迁移率变化在光谱学领域一直是一个长期存在的问题。然而,分子机制仍存在争议。为了解决这个问题,分子动力学(MD)模拟被认为是有用的工具,因为MD模拟可以提供对原子级水分子动力学的更深入的了解,从而弥补了实验观察的局限性。但是,这些模拟的可靠性很重要,并且在很大程度上取决于所采用的分子模型。通过使用经典的MD模拟框架,我们检查了在碱金属和卤化物单价离子影响下水分子动力学的再现。常规水模型与非极化离子模型结合在一起。在我们的模拟中再现了水分子迁移率下降的趋势,而无法再现出迁移率上升的趋势。然而,如果离子水的相互作用得到改善,TIP5P模型可以从检验的水模型中重现实验结果。

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