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Interpretation of ac dielectrophoretic behavior of tin oxide nanobelts using Maxwell stress tensor approach modeling

机译:麦克斯韦应力张量法建模解释氧化锡纳米带的交流介电行为

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In order to explain the dielectrophoretic behavior of ethanol suspended tin oxide (SnO_2) nanobelts observed experimentally, modeling of the ac dielectrophoresis (DEP) phenomenon is carried out. Nanobelts are a type of ribbon like semiconducting oxide nanowire with rectangular cross-sections. To calculate the DEP induced forces and torques the Maxwell stress tensor (MST) approach is used. DEP experiments have indicated negative DEP (repulsion) in the low frequency range (<100 kHz) and positive DEP (attraction) in the high frequency range (~1-10MHz) of the applied ac electric field. The experimentally observed DEP characteristic is unusual if the nanobelt is treated as possessing uniform bulk material electrical properties of tin oxide. Several different nanobelt models are studied using simulations to explain the unusual behavior. The model providing the best explanation is the one where the nanobelt has an electrically conductive interior and a non-conductive outer layer, depleted of charge carriers. This is consistent with the surface depletion phenomenon commonly observed in SnO_2 and other semiconducting metal oxide materials. This work demonstrates the importance of surface dominant properties of nanostructures in DEP manipulation and assembly.
机译:为了解释实验观察到的乙醇悬浮氧化锡(SnO_2)纳米带的介电泳行为,对交流介电电泳(DEP)现象进行了建模。纳米带是具有矩形横截面的带状半导体氧化物纳米线。为了计算DEP感应力和扭矩,使用了麦克斯韦应力张量(MST)方法。 DEP实验表明,在施加的交流电场的低频范围(<100 kHz)中为负DEP(排斥力),在高频范围(〜1-10MHz)中为正DEP(吸引力)。如果将纳米带视为具有均匀的氧化锡本体材料电性能,则实验观察到的DEP特性是不寻常的。使用模拟研究了几种不同的纳米带模型,以解释异常行为。提供最佳解释的模型是其中纳米带具有导电内部层和非导电外部层的模型,其中的电荷载流子已耗尽。这与在SnO_2和其他半导体金属氧化物材料中通常观察到的表面耗尽现象是一致的。这项工作证明了在DEP操纵和组装中纳米结构的表面优势特性的重要性。

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