Department of Chemistry and Chemical Biology and BioMaPS Institute, Rutgers University, Piscataway, New Jersey 08854, USA.
J Chem Phys. 2013 Jan 28;138(4):044103. doi: 10.1063/1.4775743.
Using the dielectrically consistent reference interaction site model (DRISM) of molecular solvation, we have calculated structural and thermodynamic information of alkali-halide salts in aqueous solution, as a function of salt concentration. The impact of varying the closure relation used with DRISM is investigated using the partial series expansion of order-n (PSE-n) family of closures, which includes the commonly used hypernetted-chain equation (HNC) and Kovalenko-Hirata closures. Results are compared to explicit molecular dynamics (MD) simulations, using the same force fields, and to experiment. The mean activity coefficients of ions predicted by DRISM agree well with experimental values at concentrations below 0.5 m, especially when using the HNC closure. As individual ion activities (and the corresponding solvation free energies) are not known from experiment, only DRISM and MD results are directly compared and found to have reasonably good agreement. The activity of water directly estimated from DRISM is nearly consistent with values derived from the DRISM ion activities and the Gibbs-Duhem equation, but the changes in the computed pressure as a function of salt concentration dominate these comparisons. Good agreement with experiment is obtained if these pressure changes are ignored. Radial distribution functions of NaCl solution at three concentrations were compared between DRISM and MD simulations. DRISM shows comparable water distribution around the cation, but water structures around the anion deviate from the MD results; this may also be related to the high pressure of the system. Despite some problems, DRISM-PSE-n is an effective tool for investigating thermodynamic properties of simple electrolytes.
利用介电一致的参考相互作用位点模型(DRISM)对分子溶剂化进行建模,我们计算了盐浓度变化时碱金属卤化物在水溶液中的结构和热力学信息。通过使用部分级数展开(PSE-n)族的封闭关系来研究改变 DRISM 中使用的封闭关系的影响,该族包括常用的超网链方程(HNC)和 Kovalenko-Hirata 封闭关系。结果与使用相同力场的显式分子动力学(MD)模拟进行了比较,并与实验进行了比较。DRISM 预测的离子平均活度系数在浓度低于 0.5 m 时与实验值吻合良好,尤其是使用 HNC 封闭关系时。由于实验中无法获得单个离子的活度(和相应的溶剂化自由能),因此仅将 DRISM 和 MD 结果进行了直接比较,发现它们具有相当好的一致性。直接从 DRISM 估计的水的活度几乎与从 DRISM 离子活度和 Gibbs-Duhem 方程推导出的值一致,但计算出的压力随盐浓度的变化主导了这些比较。如果忽略这些压力变化,则可以获得与实验的良好一致性。在三个浓度下将 DRISM 和 MD 模拟的 NaCl 溶液的径向分布函数进行了比较。DRISM 显示了阳离子周围水的分布具有可比性,但阴离子周围的水结构与 MD 结果不同;这也可能与系统的高压有关。尽管存在一些问题,但 DRISM-PSE-n 是研究简单电解质热力学性质的有效工具。