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首页> 外文期刊>Microfluidics and nanofluidics >Enhanced electroosmotic flow and ion selectivity in a channel patterned with periodically arranged polyelectrolyte-filled grooves
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Enhanced electroosmotic flow and ion selectivity in a channel patterned with periodically arranged polyelectrolyte-filled grooves

机译:周期性排列的聚电解质填充凹槽可增强电渗流和离子选择性

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摘要

An enhanced electroosmotic flow through a surface-modulated microchannel is considered. The microchannel is modulated by periodically arranged rectangular grooves filled with polyelectrolyte materials. The flat surface of the walls is maintained at a constant charge density. A nonlinear model based on the Poisson-Nernst-Planck equations coupled with the Darcy-Brinkman-Forchheimer equation in the polyelectrolyte region and Navier-Stokes equations in the clear fluid region is adopted. Going beyond the widely employed Debye-Huckel linearization, we adopt numerical methods to elucidate the effect of pertinent parameters on electroosmosis in the patterned channel. The patterned microchannel results in an enhancement in the average EOF by creating an intrinsic velocity slip at the polyelectrolyte-liquid interface. An analytical solution of the EOF for a limiting case in which the groove width is much higher than the channel height is obtained based on the Debye-Huckel approximation. This analytical solution is in good agreement with the present numerical model when a low charge density and a thin Debye layer are considered. We have also established an analogy between the EOF in a polyelectrolyte-filled grooved-channel with the EOF in which the grooves are replaced by the charged slipping planes.
机译:考虑通过表面调节的微通道的增强的电渗流。微通道由周期性排列的填充有聚电解质材料的矩形凹槽调节。壁的平坦表面保持恒定的电荷密度。采用基于Poisson-Nernst-Planck方程,聚电解质区域的Darcy-Brinkman-Forchheimer方程和透明流体区域的Navier-Stokes方程的非线性模型。除了广泛使用的Debye-Huckel线性化以外,我们采用数值方法来阐明相关参数对图案化通道中电渗的影响。通过在聚电解质-液体界面处产生固有的速度滑移,图案化的微通道可提高平均EOF。基于Debye-Huckel近似,获得了一种EOF的解析解,用于有限的情况下,其中的沟槽宽度比通道高度高得多。当考虑低电荷密度和较薄的德拜层时,该解析解与本数值模型高度吻合。我们还建立了在聚电解质填充沟槽通道中的EOF与EOF之间的类比,在EOF中,沟槽被带电的滑动平面所代替。

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