用介质电泳技术组装微纳米机器人

A. Subramanian, B. Vikramaditya, Lixin Dong, D. Bell, B. Nelson
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引用次数: 23

摘要

由于静电、表面张力和范德华力等表面和分子间力的存在,涉及微纳米物体的组装任务的接触阶段变得复杂。装配策略必须考虑到这些力的存在,以保证高精度的成功可重复的微纳米装配。建立并分析了这种静电相互作用的详细模型。在此基础上,提出了MEMS/NEMS器件的介电泳组装原理,并用微镊子和电子束光刻制备的纳米电极分别对微Ni部件和碳纳米管组件进行了实验验证。利用纳米电极产生的介电泳力成功地操纵和组装单个碳纳米管(CNTs)将导致碳纳米管在纳米电子学和NEMS中的更高整合。
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Micro and Nanorobotic Assembly Using Dielectrophoresis
The contact phase of an assembly task involving micro and nano objects is complicated by the presence of surface and intermolecular forces such as electrostatic, surface-tension and Van der Waals forces. Assembly strategies must account for the presence of these forces in order to guarantee successful repeatable micro and nanoassemblies with high precision. A detailed model for this electrostatic interaction is developed and analyzed. Based on the results of this analysis, dielectrophoretic assembly principles of MEMS/NEMS devices are proposed and experimentally verified with microtweezers for micro Ni parts and with nanoelectrodes fabricated with electron-beam lithography for carbon nanotube assembly. The successful manipulation and assembly of single carbon nanotubes (CNTs) using dielectrophoretic forces produced by nanoelectrodes will lead to a higher integration of CNTs into both nanoelectronics and NEMS.
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