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Ion size effects on the osmotic pressure and electrocapillarity in a nanoslit: Symmetric and asymmetric ion sizes

机译:离子尺寸对纳米缝隙中渗透压和电毛细管的影响:对称和不对称的离子尺寸

摘要

We analyze the effect of asymmetric finite ion size in nanoconfinement in the view of osmotic pressure and electrocapillarity. When the confinement width becomes comparable with the Debye length, the overlapped electric double layer is significantly deformed by the steric effects. We derive the osmotic pressure from the modified Poisson-Boltzmann equation in a nanoslit to examine the deviation from the ideal osmotic pressure and the repulsive force on the wall considering the asymmetry of ion sizes. Then the electrocapillarity due to the steric effect is investigated under constant potential condition with the flat interface assumption. Later, the deformation by the electrocapillarity is also considered in the first order approximation
机译:我们从渗透压和电毛细作用的角度分析了纳米限制中不对称有限离子尺寸的影响。当限制宽度变得与德拜长度相当时,重叠的双电层由于空间效应而显着变形。我们从纳米狭缝中的修正Poisson-Boltzmann方程得出渗透压,以研究与理想渗透压的偏差以及壁上的排斥力(考虑离子尺寸的不对称性)。然后,在恒定电势条件下,采用平面界面假设,研究了由于空间效应引起的电毛细管现象。后来,也可以在一阶近似中考虑电毛细作用引起的变形

著录项

  • 作者

    Rajni; Oh J.M.; Kang I. S.;

  • 作者单位
  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 eng
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