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盐溶液中导电表面之间的相互作用。

Interactions between conducting surfaces in salt solutions.

作者信息

Stenberg Samuel, Woodward Clifford E, Forsman Jan

机构信息

Theoretical Chemistry, Lund University, P. O. Box 124, 221 00 Lund, Sweden.

University College, University of New South Wales (ADFA), Canberra ACT 2600, Australia.

出版信息

Soft Matter. 2022 Feb 23;18(8):1636-1643. doi: 10.1039/d1sm01520f.

Abstract

In this work, we simulate interactions between two perfectly conducting surfaces, immersed in a salt solution. We demonstrate that these forces are quantitatively different from those between (equally charged) non-conducting surfaces. There is, for instance, a significant repulsion between net neutral surfaces. On the other hand, there are also qualitative similarities, with behaviours found with non-conducting surfaces. For instance, there is a non-monotonic dependence of the free energy barrier height, on the salt concentration, and the minimum essentially coincides with a flat profile of the apparent surface charge density ( the effective net surface charge density, some distance away from the surface, when accounting for ion neutralization), outside the so-called Stern layer. These conditions can be described as "perfect surface charge neutralization". Despite observed quantitative differences, we demonstrate that it might be possible to mimic a dispersion containing charged colloidal metal particles by a simpler model system with charged non-conducting particles, using modified particle-ion interactions.

摘要

在这项工作中,我们模拟了浸没在盐溶液中的两个完美导电表面之间的相互作用。我们证明,这些力在数量上与(带等量电荷的)非导电表面之间的力不同。例如,净中性表面之间存在显著的排斥力。另一方面,也存在定性的相似性,与非导电表面的行为相似。例如,自由能垒高度对盐浓度存在非单调依赖性,并且最小值基本上与所谓斯特恩层之外的表观表面电荷密度(有效净表面电荷密度,考虑离子中和时,在离表面一定距离处)的平坦分布相吻合。这些条件可描述为“完美表面电荷中和”。尽管观察到了数量上的差异,但我们证明,通过使用修改后的粒子 - 离子相互作用,有可能用带电荷的非导电粒子组成的更简单模型系统来模拟包含带电胶体金属粒子的分散体系。

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