首页> 外文期刊>The Journal of Chemical Physics >Potentials of mean force of simple ions in ambient aqueous solution. I. Three-dimensional reference interaction site model approach
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Potentials of mean force of simple ions in ambient aqueous solution. I. Three-dimensional reference interaction site model approach

机译:环境水溶液中简单离子的平均力的电势。一,三维参考交互站点模型方法

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We adapt the three-dimensional reference interaction site model (3D-RISM) to calculate the potentials of mean force for ion-molecular solution as a difference between the chemical potential of solvation of a cluster of solutes and of individual ones. The method yields the solvation structure around the cluster of solutes in detail. The solvation chemical potential is obtained for the three-dimensional hypernetted chain (3D-HNC) closure as well as for its partial linearization (3D-PLHNC approximation). The solvation chemical potential is obtained in a closed analytical form for both the 3D-HNC and 3D-PLHNC closures. The 3D-RISM integral equations are solved by using the supercell technique. A straightforward supercell treatment of ionic solute in polar molecular solvent leads to a big error in the potential of mean force as well as the solvation chemical potential, which for simple ions in water amounts to about 35 kcal/mol. We elaborated corrections to the 3D-RISM integral equations, alleviating the artifact of the supercell periodicity with an accuracy of 0.05 kcal/mol or better and restoring the long-range asymptotics of the solute-solvent correlation functions. The dielectrically consistent site-site RISM/HNC theory (DRISM/HNC) is employed for the solvent correlations to provide a proper description of the dielectric properties of solution. This allowed us to extend the description to solution at a finite salt concentration. We converge both the 3D-RISM and site-site DRISM integral equations by using the method of modified direct inversion in the iterative subspace. Owing to the proper initial guess of the correlation functions, iteration begins at once for a given temperature and full molecular charge, avoiding a gradual decrease of the temperature and increase of the site charges, which greatly reduces the computation time. We calculate and discuss the potentials of mean force for sodium chloride in ambient water at infinite dilution as well as at a finite concentration. (C) 2000 American Institute of Physics. [S0021-9606(00)50921-0]. [References: 63]
机译:我们采用三维参考相互作用位点模型(3D-RISM)来计算离子分子溶液的平均力势,作为一簇溶质和单个溶质的化学势之间的差。该方法详细产生了围绕溶质簇的溶剂化结构。对于三维超网状链(3D-HNC)封闭及其部分线性化(3D-PLHNC近似),可以获得溶剂化化学势。对于3D-HNC和3D-PLHNC封闭物,均以封闭的分析形式获得了溶剂化化学势。 3D-RISM积分方程是通过使用超级单元技术求解的。在极性分子溶剂中直接对离子溶质进行超级电池处理会导致平均力势和溶剂化化学势产生较大误差,对于水中的简单离子而言,其化学势约为35 kcal / mol。我们详细阐述了对3D-RISM积分方程的修正,以0.05 kcal / mol或更高的精度缓解了超级电池周期性的伪影,并恢复了溶质-溶剂相关函数的长期渐近性。介电一致性的现场-现场RISM / HNC理论(DRISM / HNC)用于溶剂关联,以提供溶液介电性能的适当描述。这使我们能够将描述扩展到有限盐浓度的溶液。通过在迭代子空间中使用改进的直接反演方法,我们将3D-RISM积分方程和站点站点DRISM积分方程收敛。由于对相关函数的正确的初始猜测,对于给定的温度和全部分子电荷,迭代立即开始,避免了温度逐渐降低和位电荷增加,从而大大减少了计算时间。我们计算并讨论了无限稀释和有限浓度的环境水中氯化钠的平均作用力潜力。 (C)2000美国物理研究所。 [S0021-9606(00)50921-0]。 [参考:63]

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