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A unifying mode-coupling theory for transport properties of electrolyte solutions. II. Results for equal-sized ions electrolytes

机译:电解质溶液传输特性的统一模式耦合理论。二。等离子电解质的结果

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摘要

On the basis of a versatile mode-coupling theory (MCT) method developed in Paper I [C. Contreras Aburto and G. N?gele, J. Chem. Phys. 139, 134109 (2013)], we investigate the concentration dependence of conduction-diffusion linear transport properties for a symmetric binary electrolyte solution. The ions are treated in this method as charged Brownian spheres, and the solvent-mediated ion-ion hydrodynamic interactions are accounted for also in the ion atmosphere relaxation effect. By means of a simplified solution scheme, convenient semi-analytic MCT expressions are derived for the electrophoretic mobilities, and the molar conductivity, of an electrolyte mixture with equal-sized ions. These expressions reduce to the classical Debye-Falkenhagen- Onsager-Fuoss results in the limit of very low ion concentration. The MCT expressions are numerically evaluated for a binary electrolyte, and compared to experimental data and results by another theoretical method. Our analysis encloses, in addition, the electrolyte viscosity. To analyze the dynamic influence of the hydration shell, the significance of mixed slip-stick hydrodynamic surface boundary conditions, and the effect of solvent permeability are explored. For the stick boundary condition employed in the hydrodynamic diffusivity tensors, our theoretical results for the molar conductivity and viscosity of an aqueous 1:1 electrolyte are in good overall agreement with reported experimental data for aqueous NaCl solutions, for concentrations extending even up to two molar.
机译:基于在论文I中开发的通用模式耦合理论(MCT)方法。 Contreras Aburto和G.N?gele,化学杂志。物理139,134109(2013)],我们研究了对称二元电解质溶液的传导-扩散线性传输特性的浓度依赖性。离子在此方法中被视为带电布朗球,并且溶剂介导的离子-离子流体动力相互作用也归因于离子气氛的松弛作用。通过简化的解决方案,可以得出具有相同大小离子的电解质混合物的电泳迁移率和摩尔电导率的方便的半解析MCT表达式。这些表达式归结为经典的德比-法肯哈根-昂萨格-福斯的结果,即离子浓度极低。对二元电解质的MCT表达式进行数值评估,并通过另一种理论方法将其与实验数据和结果进行比较。我们的分析还包含了电解质的粘度。为了分析水合壳的动力学影响,探讨了混合滑粘流体动力学表面边界条件的意义以及溶剂渗透性的影响。对于在流体动力扩散张量中使用的棒边界条件,我们关于1:1电解质水溶液的摩尔电导率和粘度的理论结果与NaCl水溶液的实验数据完全吻合,浓度甚至可以扩展到两摩尔。 。

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