首页> 外文期刊>Journal of Chemical Engineering of Japan >Characteristics of Aligned Micropillar Electrodes for Size-Selective Particle Capture by Dielectrophoresis: A Model of Dielectrophoresis Using Carbon Nanotube Electrodes
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Characteristics of Aligned Micropillar Electrodes for Size-Selective Particle Capture by Dielectrophoresis: A Model of Dielectrophoresis Using Carbon Nanotube Electrodes

机译:用于介电电泳捕获尺寸选择颗粒的对准微柱电极的特性:使用碳纳米管电极的介电泳模型

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References(21) A simplified electric field calculation is used to reveal several unique characteristics of the dielectrophoretic force to capture particles using electrodes on which conductive aligned micropillars are placed. This electrode configuration is a model to investigate a previous report about dielectrophoretic particle capture using an electrode on which carbon nanotubes have been synthesized. Conventionally, it has been believed that dielectrophoresis tends to capture larger particles because the dielectrophoretic force increases with increasing particle size when ordinal electrodes are used. However, when an electrode configuration with aligned conductive micropillars is used, small particles with diameters that are comparable to those of the micropillars can be selectively captured by dielectrophoresis. Accordingly, the size of the particles that need to be collected can be controlled by choosing an appropriate micropillar diameter. For relatively large particles, micropillars with a larger diameter can generate a stronger dielectrophoretic force over a larger area, such that a larger amount of particles can be collected. The number density of the micropillars was shown to negatively affect the dielectrophoretic force. The information obtained in this work will be useful for designing new DEP particle separators for size-selective particle capture. The use of controlled synthesis of CNTs is proposed to realize the fabrication of the electrode configuration modeled here.
机译:参考文献(21)使用简化的电场计算来揭示介电泳力的几个独特特征,以使用放置有导电排列的微柱的电极捕获颗粒。该电极配置是研究先前关于使用已在其上合成了碳纳米管的电极进行介电泳粒子捕获的报告的模型。常规上,已经相信介电泳倾向于捕获更大的颗粒,因为当使用有序电极时介电泳力随着粒径的增加而增加。然而,当使用具有对准的导电微柱的电极构造时,可以通过介电泳来选择性地捕获具有与微柱的直径相当的直径的小颗粒。因此,可以通过选择合适的微柱直径来控制需要收集的颗粒的尺寸。对于相对较大的颗粒,具有较大直径的微柱可以在较大区域上产生较强的介电泳力,从而可以收集大量颗粒。显示微柱的数量密度对介电泳力产生负面影响。这项工作中获得的信息对于设计用于尺寸选择性颗粒捕获的新型DEP颗粒分离器非常有用。提出使用CNT的受控合成来实现在此建模的电极构造的制造。

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