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Precise Placement of Metallic Nanowires on a Substrate by Localized Electric Fields and Inter-Nanowire Electrostatic Interaction

机译:通过局部电场和纳米线间静电相互作用将金属纳米线精确地放置在基板上

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摘要

Placing nanowires at the predetermined locations on a substrate represents one of the significant hurdles to be tackled for realization of heterogeneous nanowire systems. Here, we demonstrate spatially-controlled assembly of a single nanowire at the photolithographically recessed region at the electrode gap with high integration yield (~90%). Two popular routes, such as protruding electrode tips and recessed wells, for spatially-controlled nanowire alignment, are compared to investigate long-range dielectrophoretic nanowire attraction and short-range nanowire-nanowire electrostatic interaction for determining the final alignment of attracted nanowires. Furthermore, the post-assembly process has been developed and tested to make a robust electrical contact to the assembled nanowires, which removes any misaligned ones and connects the nanowires to the underlying electrodes of circuit.
机译:将纳米线放置在基板上的预定位置代表实现异质纳米线系统需要解决的重要障碍之一。在这里,我们展示了单纳米线在电极间隙处的光刻凹陷区域的空间控制组装,具有很高的集成度(〜90%)。比较了两种流行的途径,例如用于空间控制的纳米线排列的凸出的电极头和凹陷的孔,以研究长距离介电电泳纳米线吸引和短距离纳米线-纳米线静电相互作用,以确定吸引的纳米线的最终排列。此外,已经开发并测试了后组装工艺,以使与组装好的纳米线形成牢固的电接触,从而去除任何未对准的纳米线,并将纳米线连接到电路的下层电极。

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