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Quantitative analysis of parallel n a now ire array assembly by dielectrophoresis

机译:定量分析的并行n现在愤怒通过双向电泳阵列组装

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We describe an assembly technique useful for generating ordered arrays of nanowires (NWs) between electrodes via dielectrophoresis (DEP) and an analysis technique useful for extracting quantitative information about the local electric fields and dielectrophoretic forces from video microscopy data. By tuning the magnitude of the applied electric fields such that the attractive forces on the NWs are of the same order of magnitude as the Brownian forces, and by taking advantage of the inter-NW repulsive forces during DEP, NWs can be assembled into parallel arrays with high reproducibility. By employing a particle-tracking code and analysis of NW motion, we demonstrate a method for quantitative mapping of the dielectrophoretic torques and NW-surface interactions as a function of position on the substrate, which allows a more complete understanding of the dynamics of the assembly and the ability to control these parameters for precise assembly.
机译:我们描述一个用于装配技术生成的纳米线有序阵列(NWs)通过双向电泳电极之间(DEP)和一个分析技术对提取有用定量信息,当地的电力领域和dielectrophoretic部队从视频显微镜数据。应用电场的吸引力部队在NWs相同的顺序级,布朗部队,通过利用inter-NW排斥力期间环保局,NWs可以组装成并行数组重现性高。粒子追踪代码和分析西北运动,我们将演示的方法定量映射的力矩和NW-surface dielectrophoretic交互是位置的函数基质,它允许一个更完整对装配和动力学的理解控制这些参数的能力精确的装配。

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