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Dielectrophoretic Characterization of SnO2 Nanobelts

机译:SnO2纳米带的介电泳特性

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In the present work we report the results of AC dielectrophoresis experiments on ethanol suspended SnO2 nanobelts. AC field (frequency ~5 Hz - 10 MHz) was applied between microelectrodes, and detailed and direct observations of the nanobelt motion were performed. It revealed a wide variety of nanobelt motions induced by the dielectrophoretic forces, which include attraction and repulsion depending on the signal frequency range. These forces caused rigid body motion and deformation in long nanobelts, and pearl chain formation in short nanobelts and particles. The presence of negative (repulsion) dielectrophoresis is unusual in SnO2, since bulk material properties dictate positive dielectrophorsis in the frequency range studied.
机译:在本工作中,我们在乙醇悬浮的SnO2纳米核上报告AC电泳实验的结果。在微电极之间施加交流场(频率〜5Hz -10MHz),并进行纳米玻璃布运动的详细和直接观察。它揭示了介电泳力引起的各种纳米乐曲运动,其包括取决于信号频率范围的吸引和排斥。这些力引起长纳米纤维的刚性体运动和变形,以及短纳米螺母和颗粒中的珍珠链形成。阴性(排斥)介电电泳的存在在SnO 2中是不寻常的,因为散装物质在所研究的频率范围内决定正态电流液。

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