Goel Teena, Patra Chandra N, Ghosh Swapan K, Mukherjee Tulsi
Theoretical Chemistry Section, Chemistry Group, Bhabha Atomic Research Centre, Mumbai 400 085, India.
J Chem Phys. 2008 Oct 21;129(15):154707. doi: 10.1063/1.2981057.
We present the Monte Carlo simulation and density functional study of structure of cylindrical double layers considering solvent as the third component. We have chosen molecular solvent model, where ions and solvent molecules are considered as charged and neutral hard spheres, respectively, having equal diameter. The polyionic cylinder is modeled as an infinite, rigid, and impenetrable charged hard cylinder surrounded by the electrolyte and the solvent spheres. The theory is partially perturbative where the hard-sphere interactions are treated within the weighted density approach, the corresponding ionic interactions have been evaluated through second-order functional Taylor expansion with respect to the bulk electrolyte. The Monte Carlo simulations have been performed in canonical ensemble. The system is studied at varying concentrations of electrolyte ions and the solvent molecules, at different valences of the electrolyte, at different sizes of hard spheres, and at varying surface charge density. The theory and the simulation results are found to be in good agreement at different parametric conditions. The hard-sphere exclusion effects due to molecular nature of the solvent are shown to have special implications in characterizing diffuse layer phenomena such as layering and charge inversion.
我们展示了将溶剂视为第三组分的圆柱形双层结构的蒙特卡罗模拟和密度泛函研究。我们选择了分子溶剂模型,其中离子和溶剂分子分别被视为具有相等直径的带电和中性硬球。聚离子圆柱体被建模为一个无限的、刚性的、不可穿透的带电硬圆柱体,被电解质和溶剂球包围。该理论部分是微扰的,其中硬球相互作用在加权密度方法内处理,相应的离子相互作用通过相对于本体电解质的二阶泛函泰勒展开来评估。蒙特卡罗模拟是在正则系综中进行的。研究了该系统在不同电解质离子和溶剂分子浓度、不同电解质价态、不同硬球尺寸以及不同表面电荷密度下的情况。发现在不同参数条件下理论和模拟结果吻合良好。溶剂的分子性质导致的硬球排斥效应在表征扩散层现象如分层和电荷反转方面具有特殊意义。