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Guided assembly of metal and hybrid conductive probes using floating potential dielectrophoresis

机译:指导组装的金属和混合导电探测器使用浮动潜在的双向电泳

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摘要

We present the site-selective, parallel and reproducible formation of conductive gold and tetrathiafulvalene-gold (TTF-Au) hybrid micro- and nanowires from their respective ion salt and cation-radical solutions. While the formation of micro- and nanowires by means of dielectrophoresis with directly coupled electrodes has been thoroughly investigated in recent studies, we present here the first relevant example of metal and hybrid wire assembly obtained by floating potential dielectrophoresis. In this configuration, the assembly of micro- and nanowires is achieved by capacitively coupling a large electrode (bias electrode) to a conductive substrate (p-doped Si) separated by an insulating oxide layer. In contrast to former studies, this allows parallel production of micro- and nanowires with only one pair of electrodes connected to a sine wave generator. We further demonstrate that these structures are suitable probes for localized surface enhanced Raman spectroscopy (SERS).
机译:我们现在site-selective,平行可再生的导电金的形成tetrathiafulvalene-gold (TTF-Au)混合微并从各自离子盐和纳米线cation-radical解决方案。微,纳米线的双向电泳与直接耦合电极已经彻底调查最近的研究中,我们首先出现在这里有关金属和混合动力线的例子大会通过浮动的潜力双向电泳。组装微型和纳米线是通过电容性耦合大电极(偏见电极)导电衬底(p型硅)一个绝缘氧化层隔开。前的研究相比,这允许并行生产微型和纳米线的只有一个两个电极连接到一个正弦波发电机。结构是适合本地化的探针表面增强拉曼光谱(ser)。

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