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Influencing Factors and Techniques of Carbon Nanotube Assembly by Dielectrophoresis

机译:电泳碳纳米管组装的影响因素及技术

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Due to their excellent properties, carbon nanotubes (CNTs) have the potential to be applied as functional elements for nanoelectronics, nanoelectromechanical systems, new energy, sensors, and others. One precondition for many of these applications is to assemble CNTs into devices and the number and position of assembled CNTs usually need to be controlled. The process factors for CNT assembly by dielectrophoresis (DEP), which include the magnitude of the applied voltage, the concentration of the CNT suspension, the duration of the electric field, and the geometry of the CNTs, and the shape of the electrodes, have great influence on the assembly results. Some techniques based on DEP, such as those adding floating electrodes, optically induced DEP (ODEP) and using hydrodynamic force, can realize precise positioning of CNTs. This paper introduces the factors and techniques which influence the number and position of assembled CNTs. The research intends to provide help for the application of CNTs in nanoelectronics.
机译:由于其优异的性能,碳纳米管(CNT)具有含义纳米电子,纳米机电系统,新能量,传感器等功能元件的电位。其中许多应用的一个前提是将CNT组装到设备中,并且通常需要控制组装的CNT的数量和位置。 CNT组件通过介电泳(DEP)的过程因子,其包括施加电压的大小,CNT悬架的浓度,电场的持续时间和CNT的几何形状,以及电极的形状,具有对大会结果的影响很大。基于DEP的一些技术,例如添加浮动电极,光学诱导的DEP(ODEP)和使用流体动力力,可以实现CNT的精确定位。本文介绍了影响组装CNT的数量和位置的因素和技术。该研究打算为在纳米电子学中提供CNT的帮助。

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