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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Controllable rotating behavior of individual dielectric microrod in a rotating electric field
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Controllable rotating behavior of individual dielectric microrod in a rotating electric field

机译:旋转电场中各电介质微管的可控旋转行为

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We report herein controllable rotating behavior of an individual dielectric microrod driven by a background rotating electric field. By disposing or removing structured floating microelectrode, the rigid rod suspended in electrolyte solution accordingly exhibits cofield or antifield rotating motion. In the absence of the ideally polarizable metal surface, the dielectric rod rotates opposite to propagation of electric field, with the measured rotating rate much larger than predicted by Maxwell–Wager interfacial polarization theory incorporating surface conduction of fixed bond charge. Surprisingly, with floating electrode embedded, a novel kind of cofield rotation mode occurs in the presence of induced double‐layer polarization, due to the action of hydrodynamic torque from rotating induced‐charge electroosmosis. This method of achieving switchable spin modes of dielectric particles would direct implications in constructing flexible electrokinetic framework for analyzing 3D profile of on‐chip biomicrofluidic samples.
机译:我们报告的个体电介质microrod由后台旋转电场驱动的本文所可控旋转行为。通过设置或除去浮动结构微电极,悬浮在电解液中的刚性杆相应地显示出cofield或antifield旋转运动。在不存在理想地极化的金属表面的,介质棒旋转相反的电场的传播,与所测量的旋转速度比由麦克斯韦 - 下注结合固定键电荷表面传导界面极化理论所预测的要大得多。令人惊讶地,与浮置电极嵌入,一种新型的种cofield旋转模式发生在感应双层极化的存在,由于液力变矩器的旋转诱导的充电电渗作用。实现电介质粒子的切换的自旋模式会直接影响在构造柔性电动框架用于分析芯片上biomicrofluidic样品的3D轮廓的此方法。

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