首页> 外文会议>NSTI Nanotechnology Conference and Trade Show(NSTI Nanotech 2005) vol.1; 20050508-12; Anaheim,CA(US) >Multiscale Computation of Fluid and Ion Transport in Nanochannels: The Effect of Partial Charges
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Multiscale Computation of Fluid and Ion Transport in Nanochannels: The Effect of Partial Charges

机译:纳米通道中流体和离子传输的多尺度计算:部分电荷的影响

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摘要

Effects of nanoscale confinement and partial charges that stem from quantum calculations are investigated by using a hierarchical multiscale methodology in silica slit channels filled with 1 M KCl. Partial charges of both bulk and surface atoms from abinitio quantum calculations that take into account bond polarization is used in molecular dynamics simulations to obtain ion and water concentration profiles for channel widths of 1.371, 2.235 and 3.09 nm. By simulating corresponding channels with no partial charges it was observed that the partial charges affect the concentration profiles till a distance of about 0.8 nm from the surface. Both in the uncharged and charged cases, oscillations in concentration profiles of K~+ and Cl~- ions gives rise to an electroosmotic flow in the presence of an external electric field contrary to the expectations from continuum theory. The Ⅰ-Ⅴ characteristics are significantly altered by partial charges for slits less than 2.5 nm in width.
机译:通过使用填充1 M KCl的二氧化硅狭缝通道中的分级多尺度方法,研究了量子计算产生的纳米级限制和部分电荷的影响。分子动力学模拟中使用了从二重量子计算中考虑了键极化的体原子和表面原子的部分电荷,从而获得了通道宽度为1.371、2.235和3.09 nm的离子和水浓度分布。通过模拟没有部分电荷的相应通道,可以观察到部分电荷会影响浓度分布,直到与表面的距离约为0.8 nm。在不带电和带电的情况下,在有外部电场的情况下,K〜+和Cl〜-离子浓度分布的振荡都会引起电渗流,这与连续性理论的预期相反。宽度小于2.5 nm的缝隙的部分电荷会显着改变Ⅰ-Ⅴ特性。

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