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Ion-specific thermodynamics of multicomponent electrolytes: A hybrid HNC/MD approach

机译:多组分电解质的离子特异性热力学:HNC / MD混合方法

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Using effective infinite dilution ion-ion interaction potentials derived from explicit-water molecular dynamics (MD) computer simulations in the hypernetted-chain (HNC) integral equation theory we calculate the liquid structure and thermodynamic properties, namely, the activity and osmotic coefficients of various multicomponent aqueous electrolyte mixtures. The electrolyte structure expressed by the ion-ion radial distribution functions is for most ions in excellent agreement with MD and implicit solvent Monte Carlo (MC) simulation results. Calculated thermodynamic properties are also represented consistently among these three methods. Our versatile HNC/MD hybrid method allows for a quick prediction of the thermodynamics of multicomponent electrolyte solutions for a wide range of concentrations and an efficient assessment of the validity of the employed MD force-fields with possible implications in the development of thermodynamically consistent parameter sets.
机译:在超网状链(HNC)积分方程理论中,使用从显式水分子动力学(MD)计算机模拟获得的有效无限稀释离子-离子相互作用势,我们可以计算液体结构和热力学性质,即各种分子的活度和渗透系数多组分电解质水溶液混合物。对于大多数离子而言,由离子-离子径向分布函数表示的电解质结构与MD和隐式溶剂蒙特卡洛(MC)模拟结果非常吻合。在这三种方法中,计算出的热力学性质也可以一致地表示。我们通用的HNC / MD混合方法可快速预测多种浓度范围内的多组分电解质溶液的热力学,并有效评估所用MD力场的有效性,这可能对开发热力学一致的参数集产生影响。

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