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首页> 外文期刊>Bulletin of the American Physical Society >APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - A Sinusoidal Applied Electric Potential can Induce a Long-Range, Steady Electrophoretic Force
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APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - A Sinusoidal Applied Electric Potential can Induce a Long-Range, Steady Electrophoretic Force

机译:APS-流体动力学APS部门第70届年会-事件-正弦施加的电势可以产生长距离,稳定的电泳力

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We use the standard electrokinetic model to numerically investigate the electric field in aqueous solutions between parallel electrodes under AC polarization. In contrast to prior work, we invoke no simplifying assumptions regarding the applied voltage, frequency, or mismatch in ionic mobilities. We find that the nonlinear electromigration terms significantly contribute to the overall shape of the electric potential vs. time, which at sufficiently high applied potentials develops multi-modal peaks. More surprisingly, we find that electrolytes with non-equal mobilities yield an electric field with non-zero time average at large distances from the electrodes. Our calculations indicate this long-range electric field suffices to levitate colloidal particles many microns away from the electrode against the gravitational field, in accord with experimental observations of such behavior (Woehl et al., PRX, 2015). Moreover, the results indicate that particles will aggregate laterally near electrodes in some electrolytes but separate in others, helping explain a longstanding but not well understood phenomenon.
机译:我们使用标准的电动模型来数值研究交流极化下平行电极之间的水溶液中的电场。与先前的工作相反,我们没有引用关于施加的电压,频率或离子迁移率不匹配的简化假设。我们发现非线性电迁移项显着影响了电势随时间的整体形状,在足够高的施加电势下会形成多峰。更令人惊讶的是,我们发现具有不相等迁移率的电解质会在距电极很远的距离处产生平均时间非零的电场。我们的计算表明,这种长距离电场足以使远离电极的许多微米的胶体粒子悬浮起来,从而抵抗引力场,这与这种行为的实验观察一致(Woehl等人,PRX,2015)。此外,结果表明,颗粒将在某些电解质中横向聚集在电极附近,而在另一些电解质中分离,这有助于解释一种长期存在但尚未充分理解的现象。

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