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Electrical conduction in 7 nm wires constructed on lambda-DNA

机译:在lambda-DNA上构建的7 nm导线中的导电

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We examine the morphological and electrical characteristics of nanowires fabricated on DNA templates via palladium (Pd) reduction. lambda-DNA molecules were stretched and aligned on a mica surface using a molecular combing technique, followed by an electroless deposition of palladium, resulting in formation of nanowires with nominal width of 7 nm. We investigated the size distribution of nanowires with atomic force microscopy and made electrical connections to the wires by metal evaporation through multiple shadow masks. Electrical characterization of the nanowires under various bias conditions, variable temperature, and with different contact metal work functions revealed a conduction mechanism resembling that of granular metals.
机译:我们检查通过钯(Pd)还原在DNA模板上制造的纳米线的形态和电学特征。使用分子梳技术将lambda-DNA分子拉伸并在云母表面对齐,然后化学沉积钯,从而形成标称宽度为7 nm的纳米线。我们用原子力显微镜研究了纳米线的尺寸分布,并通过多个荫罩通过金属蒸发将金属线电连接到导线上。在各种偏置条件,可变温度下以及具有不同接触金属功函数的情况下,纳米线的电学表征揭示了类似于粒状金属的导电机制。

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