López-García José Juan, Horno José, Grosse Constantino
Departamento de Física, Universidad de Jaén, Campus Las Lagunillas, Ed. A-3, 23071 Jaén, Spain.
Departamento de Física, Universidad de Jaén, Campus Las Lagunillas, Ed. A-3, 23071 Jaén, Spain.
J Colloid Interface Sci. 2014 Aug 15;428:308-15. doi: 10.1016/j.jcis.2014.04.065. Epub 2014 May 9.
The equilibrium properties of the electrical double layer surrounding a charged spherical colloidal particle immersed in an aqueous electrolyte solution are examined taking into account the finite ion size. This study includes the representation of the steric interactions among ions using both the Bikerman and the Carnahan-Starling models, an account of all the effects related to the representation of hydrated ions as dielectric spheres (dependence of the electrolyte solution permittivity, on the local ion concentration, and appearance of the Born and the dielectrophoretic forces acting on the ions), and solution of the problem for both high and low surface charge values. We find that the Carnahan-Starling model together with effective ion permittivity related effects appears to be able to provide an interpretation to the electrokinetic potential vs. surface charge dependence in the case of colloidal particles suspended in aqueous electrolyte solutions. On the contrary, for electrode-electrolyte systems, both the Bikerman and the Carnahan-Starling models might be able to explain this dependence.
考虑到离子的有限尺寸,研究了浸没在水性电解质溶液中的带电球形胶体颗粒周围双电层的平衡性质。本研究包括使用比克曼模型和卡纳汉 - 斯塔林模型表示离子间的空间相互作用,考虑将水合离子表示为介电球体的所有相关效应(电解质溶液介电常数对局部离子浓度的依赖性,以及作用在离子上的玻恩力和介电泳力的出现),并求解高表面电荷值和低表面电荷值情况下的问题。我们发现,对于悬浮在水性电解质溶液中的胶体颗粒,卡纳汉 - 斯塔林模型连同有效离子介电常数相关效应似乎能够解释动电电位与表面电荷的依赖性。相反,对于电极 - 电解质系统,比克曼模型和卡纳汉 - 斯塔林模型都可能能够解释这种依赖性。