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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Ion exclusion and electrokinetic effects resulting from electro-osmotic flow of salt solutions in charged silica nanopores
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Ion exclusion and electrokinetic effects resulting from electro-osmotic flow of salt solutions in charged silica nanopores

机译:盐溶液在带电二氧化硅纳米孔中的电渗流产生的离子排斥和电动效应

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摘要

Silica nanopores are the focus of significant scientific interest due to their potential in a wide variety of applications including desalination membranes. In this paper, the results of extensive all-atom molecular dynamics simulations of the electro-osmotic flow of 0.5 M monovalent (NaCl) and divalent (CaCl2) ionic solutions through cylindrical charged silica nanopores are presented. The silica nanopores are produced such that they capture the experimentally observed interfacial properties. The results provide an atomistic description of the ion transport through pores of diameters of 1.5 nm, 2.0 nm, 2.5 nm and 3.0 nm. In doing so, the effect of pore size on ion pairing, ion hydration, and water orientation for each ionic solution was investigated. Also, the transport of the ions through the nanopores is studied, and it is found that in the monovalent solutions the Cl~- ions are excluded from the nanopores of all sizes. Whereas in the divalent solutions, there is no such preferential exclusion of either ion. This is due to the fact that the interfacial charge is fully compensated for by the Ca~(2+) ions while it is not the case for the Na~+ ions.
机译:二氧化硅纳米孔由于其在包括淡化膜在内的各种应用中的潜力而成为重要的科学兴趣。在本文中,给出了通过圆柱带电二氧化硅纳米孔的0.5 M单价(NaCl)和二价(CaCl2)离子溶液的电渗流的广泛全原子分子动力学模拟的结果。产生二氧化硅纳米孔,使得它们捕获实验观察到的界面性质。结果提供了原子通过直径1.5 nm,2.0 nm,2.5 nm和3.0 nm的孔进行离子迁移的原子描述。在此过程中,研究了孔径对每种离子溶液的离子对,离子水合和水取向的影响。而且,研究了离子通过纳米孔的传输,并且发现在单价溶液中,Cl-离子被排除在所有尺寸的纳米孔之外。而在二价溶液中,没有任何一种这样的优先排除离子。这是由于界面电荷完全被Ca〜(2+)离子补偿,而Na〜+离子却并非如此。

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