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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Thermodynamics of Small Alkali Metal Halide Cluster Ions: Comparison of Classical Molecular Simulations with Experiment and Quantum Chemistry
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Thermodynamics of Small Alkali Metal Halide Cluster Ions: Comparison of Classical Molecular Simulations with Experiment and Quantum Chemistry

机译:小型碱金属卤化物簇离子的热力学:经典分子模拟与实验和量子化学的比较

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摘要

We evaluate the ability of selected classical molecular models to describe the thermodynamic and structural aspects of gas-phase hydration of alkali metal halide ions and the formation of small water clusters. To understand the effect of many-body interactions (polarization) and charge penetration effects on the accuracy of a force field, we perform Monte Carlo simulations with three rigid water models using different functional forms to account for these effects: (i) point charge nonpolarizable SPC/E, (ii) Drude point charge polarizable SWM4-DP, and (iii) Drude Gaussian charge polarizable BK3. Model predictions are compared with experimental Gibbs free energies and enthalpies of ion hydration, and with microscopic structural properties obtained from quantum DFT calculations. We find that all three models provide comparable predictions for pure water clusters and cation hydration but differ significantly in their description of anion hydration. None of the investigated classical force fields can consistently and quantitatively reproduce the experimental gas-phase hydration thermodynamics. The outcome of this study highlights the relation between the functional form that describes the effective intermolecular interactions and the accuracy of the resulting ion hydration properties.
机译:我们评估所选经典分子模型描述碱金属卤化物离子气相水合的热力学和结构方面以及形成小的水团簇的能力。为了了解多体相互作用(极化)和电荷穿透效应对力场精度的影响,我们使用三种刚性水模型(使用不同的函数形式)执行蒙特卡洛模拟,以说明这些效应:(i)点电荷不可极化SPC / E,(ii)德鲁德点电荷可极化SWM4-DP,以及(iii)德鲁德高斯电荷可极化BK3。将模型预测与实验吉布斯自由能和离子水合焓进行比较,并与通过量子DFT计算获得的微观结构性质进行比较。我们发现,所有三个模型都为纯水团簇和阳离子水合提供了可比较的预测,但是在阴离子水合的描述上却有很大不同。没有研究的经典力场能够一致,定量地再现实验气相水化热力学。这项研究的结果强调了描述有效分子间相互作用的功能形式与所得离子水合性质的准确性之间的关系。

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