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首页> 外文期刊>The Journal of Chemical Physics >An application of the novel quantum mechanical/molecular mechanical method combined with the theory of energy representation:An ionic dissociation of a water molecule in the supercritical water
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An application of the novel quantum mechanical/molecular mechanical method combined with the theory of energy representation:An ionic dissociation of a water molecule in the supercritical water

机译:新型量子力学/分子力学方法结合能量表示理论的应用:超临界水中水分子的离子离解

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摘要

A novel quantum chemical approach recently developed has been applied to an ionic dissociation of a water molecule (2H_2O->H_3O~+ + OH~-) in ambient and supercritcal water.The method is based on the quantum mechanical/molecular mechanical (QM/MM) simulations combined with the theory of energy representation (QM/MM-ER),where the energy distribution function of MM solvent molecules around a QM solute serves as a fundamental variable to determine the hydration free energy of the solute according to the rigorous framework of the theory of energy representation.The density dependence of the dissociation free energy in the supercritical water has been investigated for the density range from 0.1 to 0.6 g/cm~3 with the temperature fixed at a constant.It has been found that the product ionic species significantly stabilizes in the high density region as compared with the low density.Consequently,the dissociation free energy decreases monotonically as the density increases.The decomposition of the hydration free energy has revealed that the entropic term (-TDeltaS) strongly depends on the density of the solution and dominates the behavior of the dissociation free energy with respect to the variation of the density.The increase in the entropic term in the low density region can be attributed to the decrease in the translational degrees of freedom brought about by the aggregation of solvent water molecules around the ionic solute.
机译:最近开发的一种新的量子化学方法已用于环境和超临界水中水分子(2H_2O-> H_3O〜+ + OH〜-)的离子解离,该方法基于量子力学/分子力学(QM / MM)模拟与能量表示理论(QM / MM-ER)相结合,其中MM溶剂分子在QM溶质周围的能量分布函数是根据严格框架确定溶质的水合自由能的基本变量研究了在0.1至0.6 g / cm〜3的密度范围内,温度固定的情况下,超临界水中离解自由能的密度依赖性。与低密度相比,离子物种在高密度区域显着稳定。因此,解离自由能随密度增加而单调减少.t的分解水合自由能表明,熵项(-TDeltaS)在很大程度上取决于溶液的密度,并且相对于密度的变化,支配了离解自由能的行为。低密度下的熵项增加该区域可归因于溶剂水分子在离子溶质周围的聚集所引起的翻译自由度的降低。

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