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基于古依-查普曼-斯特恩-格雷厄姆模型的电荷调控下同性异质双层之间的相互作用。

Interaction between dissimilar double layers with like signs under charge regulation on the basis of the Gouy-Chapman-Stern-Grahame model.

作者信息

Usui S

机构信息

Tohoku University, Katahira, Aoba-ku, Sendai 980-8577, Japan.

出版信息

J Colloid Interface Sci. 2004 Dec 1;280(1):113-9. doi: 10.1016/j.jcis.2004.07.014.

Abstract

The force of interaction between two flat double layers with dissimilar surface potentials but of the same signs, in contact with 1-1 electrolyte solutions (0.001, 0.01, and 0.1 M), was calculated as a function of the surface separation. The calculation was carried out on the basis of the Gouy-Chapman-Stern-Grahame double-layer model, incorporating the site-dissociation and site-binding model used previously for many oxide studies. The results demonstrated that the interaction force under surface charge regulation was always repulsive, increasing progressively with decreasing surface separation. This result is in contrast to the predictions of previous theories that are based on the Gouy-Chapman (GC) double-layer model. Dependence of surface potentials and surface charge densities on the surface separation is also presented.

摘要

计算了两个具有不同表面电势但符号相同的扁平双层之间的相互作用力,这两个双层与1-1电解质溶液(0.001 M、0.01 M和0.1 M)接触,该力是表面间距的函数。计算是基于古伊-查普曼-斯特恩-格雷厄姆双层模型进行的,该模型纳入了先前许多氧化物研究中使用的位点解离和位点结合模型。结果表明,表面电荷调节下的相互作用力始终是排斥力,随着表面间距的减小而逐渐增大。这一结果与基于古伊-查普曼(GC)双层模型的先前理论预测相反。还给出了表面电势和表面电荷密度对表面间距的依赖性。

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