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ReaxFF molecular dynamics simulations on the structure and dynamics of electrolyte water systems at ambient temperature

机译:Reaxff在环境温度下电解液系统结构和动力学的分子动力学模拟

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摘要

ReaxFF molecular dynamics simulations have been performed to study the effect of cations Li+, Na+ and K+ and anion Cl- on the structural and dynamical properties of water, using the force field recently developed by Fedkin and co-workers. The structural relationship of ion and water has been analyzed from the radial distribution function and angular distribution. Comparisons of ReaxFF angle variation of ions and water within the first solvation shell were made and found to be in good agreement with literature. The disruption of hydrogen bond network of water by ions is elucidated by ion-water residence times, water-water hydrogen bond dynamics and reorientational dynamics. ReaxFF diffusion coefficient and residence times of electrolyte water system were compared with ab initio and non-reactive potentials to analyze the difference in dynamics. We gained insight into the ion interaction with water and how it can accelerate or decelerate water dynamics. ReaxFF outlines the formation and dissolution of metal hydroxides and metal chlorides over the course of simulation to explain the diffusion dynamics of water in salt solutions, allowing us to elucidate the impact of concentration on the self-diffusivity of water and ions in solutions, and to reveal that this effect always decreases the mobility and is not at all ion-specific. The obtained results have opened new opportunities to extend the ReaxFF methodology towards systems involving electrolytes.
机译:已经进行了Reaxff的分子动力学模拟,以研究阳离子Li +,Na +和K +和阴离子对水的结构和动力学性能的影响,使用Fedkin和Co-Workers最近开发的力场。离子和水的结构关系已经从径向分布函数和角分布分析。制备了第一溶剂化壳内离子和水的Reaxff角度变异的比较,并发现与文献吻合良好。通过离子 - 水停留时间,水 - 水氢键动态和重新定向动力学阐明了通过离子的水的破坏。将电解质水系统的Reaxff扩散系数和停留时间与AB初始和非反应电位进行比较,以分析动态差异。我们获得了与水的离子相互作用的洞察,以及如何加速或减速水动态。 Reaxff概述了金属氢氧化物和金属氯化物在模拟过程中的形成和溶解,以解释盐溶液中水的扩散动态,允许我们阐明浓度对溶液中水和离子自扩散性的影响,以及揭示这种效果总是降低移动性,并且不完全是离子特异性的。获得的结果已经开辟了新的机会,以扩展Reaxff方法对涉及电解质的系统。

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