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首页> 外文期刊>International Journal of Theoretical and Applied Multiscale Mechanics >Effects of surface charge density and distribution on the nanochannel electro-osmotic flow
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Effects of surface charge density and distribution on the nanochannel electro-osmotic flow

机译:表面电荷密度和分布对纳米通道电渗流的影响

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摘要

Surface charge density and distribution dependence of a nanochannel electro-osmotic flow was examined using a Molecular Dynamics (MD) model. Systems consisting of Na~+ and Cl~- ions in water confined between crystalline walls with varying negative charge on inner surfaces in an external electric field were investigated. At low surface charge densities, water flows as expected by common interpretations of electro-osmosis. At intermediate surface charge density, the flow exhibits a maximum. Strongly charged surfaces cause adsorption of counterions, immobilisation of the near-wall fluid layers, and subsequent flow reversal. An effect of increase in the viscosity of water near the strongly charged surface was demonstrated. When the discrete - 1 e charge was distributed on a subgrid of surface atoms, the flow deteriorated and reversed at much lower surface charge densities than when all the surface atoms carried equal partial charge.
机译:使用分子动力学(MD)模型检查了纳米通道电渗流的表面电荷密度和分布依赖性。研究了由Na +和Cl-离子限制在结晶壁之间的水中的系统,该离子壁在外部电场的内表面具有变化的负电荷。在低表面电荷密度下,水会按电渗透的一般解释所预期的那样流动。在中间表面电荷密度下,流量呈现最大值。带强电荷的表面会引起抗衡离子的吸附,近壁流体层的固定以及随后的逆流。证实了在强电荷表面附近水的粘度增加的效果。当离散的1 e电荷分布在表面原子的子网格上时,与所有表面原子均带有相同的部分电荷时相比,流动恶化并以低得多的表面电荷密度逆转。

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