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Charged Polymers Transport under Applied Electric Fields in Periodic Channels

机译:周期性通道在施加电场下的带电聚合物传输

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摘要

By molecular dynamics simulations, we investigated the transport of charged polymers in applied electric fields in confining environments, which were straight cylinders of uniform or non-uniform diameter. In the simulations, the solvent was modeled explicitly and, also, the counterions and coions of added salt. The electrophoretic velocities of charged chains in relation to electrolyte friction, hydrodynamic effects due to the solvent, and surface friction were calculated. We found that the velocities were higher if counterions were moved away from the polymeric domain, which led to a decrease in hydrodynamic friction. The topology of the surface played a key role in retarding the motion of the polyelectrolyte and, even more so, in the presence of transverse electric fields. The present study showed that a possible way of improving separation resolution is by controlling the motion of counterions or electrolyte friction effects.
机译:通过分子动力学模拟,我们研究了封闭环境中带电聚合物在外加电场中的传输情况,这些环境是直径均匀或不均匀的直圆柱体。在模拟中,对溶剂进行了显式建模,还对添加的盐的抗衡离子和离子进行了建模。计算了带电链的电泳速度与电解质摩擦,溶剂引起的流体动力学效应以及表面摩擦的关系。我们发现,如果将抗衡离子移离聚合物结构域,则速度会更高,这会导致流体动力摩擦的减小。表面的拓扑在延迟聚电解质的运动中起着关键作用,在横向电场的存在下更是如此。本研究表明,提高分离分辨率的一种可能方法是控制反离子的运动或电解质的摩擦效应。

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