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Dielectrophoretic ratchets for linear and rotary nanomotors

机译:用于线性和旋转纳米电机的介电流棘轮

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Dielectrophoresis (DEP) is a phemomenon of induced particle motion in non-uniform electric fields. In this paper, we will describe how the phenomenon can be used to design electrokinetic ratchet devices to provide both linear and rotary motion. Such devices exploit Brownian motion through the imposition of an asymmetrical potential energy field, to provide motion. Since Brownian motion is a prerequisite, such devices are most applicable to the transport of nanoparticles. In this paper, we present the results of modelling of such devices capable of linear translation, and of particular novelty, rotary motion and show the torque of the rotary motor is of the order of that generated by a bacterial motor.
机译:介电泳(DEP)是在非均匀电场中诱导颗粒运动的磷料。在本文中,我们将描述如何使用该现象来设计电动棘轮装置,以提供线性和旋转运动。这种装置通过施加不对称的潜在能量场来利用布朗运动,提供运动。由于布朗运动是先决条件,因此这种装置最适用于纳米颗粒的运输。在本文中,我们介绍了能够线性翻译的这种装置的建模结果,以及特定的新颖性,旋转运动,并且表示旋转马达的扭矩是由细菌马达产生的顺序。

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