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Manipulating connectivity and electrical conductivity in metallic nanowire networks

机译:在金属纳米线网络中操纵连通性和电导率

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摘要

Connectivity in metallic nanowire networks with resistive junctions is manipulated by applying an electric field to create materials with tunable electrical conductivity. In situ electron microscope and electrical measurements visualize the activation and evolution of connectivity within these networks. Modeling nanowire networks, having a distribution of junction breakdown voltages, reveals universal scaling behavior applicable to all network materials. We demonstrate how local connectivity within these networks can be programmed and discuss material and device applications.
机译:通过施加电场来创建具有可调电导率的材料,可以控制具有电阻结的金属纳米线网络中的连接性。原位电子显微镜和电学测量可视化了这些网络中连接的激活和演变。具有结击穿电压分布的纳米线网络建模揭示了适用于所有网络材料的通用缩放行为。我们将演示如何对这些网络中的本地连接进行编程,并讨论材料和设备的应用。

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