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Estimation of frequency-dependent electrokinetic forces on tin oxide nanobelts in low frequency electric fields

机译:低频电场中氧化锡纳米带上频率相关的电动势的估计

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摘要

A novel experimental approach is used for studying the response of ethanol-suspended SnO_2 nanobelts under the influence of low frequency ac electric fields. The electrically generated forces are estimated by analyzing the angular motion of the nanobelt, induced by repulsive forces originating predominantly from negative dielectrophoresis (DEP) on planar microelectrodes. The nanobelt motion is experimentally recorded in real time in the low frequency range ( 100 kHz) and the angular velocities are calculated. A simple analytical model of force balance between the electrical forces and fluidic drag for long nano-objects is developed and used to deduce estimates of the frequency-dependent DEP force and torque magnitudes from the angular velocity data. Additional experiments, performed in a parallel plate electrode configuration in a fluidic channel to investigate the effect of dc and very low frequency ac (~Hz) electric fields, indicate the presence of electrophoresis in the ethanol-suspended SnO_2 nanobelts. The experimentally observed nanobelt motion is analyzed using the equation of motion, and an order-of-magnitude estimate of the nanobelt surface charge density is obtained.
机译:一种新颖的实验方法被用于研究乙醇悬浮的SnO_2纳米带在低频交流电场的影响下的响应。通过分析纳米带的角运动来估计产生的力,该角运动主要由平面微电极上的负介电电泳(DEP)产生的排斥力引起。在低频范围(<100 kHz)中通过实验实时记录纳米带的运动,并计算角速度。建立了用于长纳米物体的电力和流体阻力之间力平衡的简单分析模型,并将其用于从角速度数据中得出与频率相关的DEP力和扭矩大小的估算值。在流体通道中的平行板电极配置中进行的其他实验研究了直流电和极低频交流(〜Hz)电场的影响,这些实验表明在乙醇悬浮的SnO_2纳米带中存在电泳。使用运动方程分析实验观察到的纳米带运动,并获得纳米带表面电荷密度的数量级估计。

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