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Three-Terminal Nanometer Metal Switches Utilizing Solid Electrolytes

机译:利用固体电解质的三端纳米金属开关

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摘要

We propose a three-terminal nanometer metal switch that utilizes a solid electrolyte where a nanoscale metal filament is stretched and retracted. Its operating principle is based on electrochemical reaction and ion migration in the electrolyte. The fabricated device is composed of a solid electrolyte layer (Cu_2S), a gate (Cu), a source (Cu), and a drain (Pt). After the Cu filament is formed between the source and the drain by applying the drain voltage, repeat-able on/off switching in the drain current is obtained by controlling the gate voltage. The on/off current ratio can be as high as 10~5, and the programmable cycle is around 50. Each state can be kept for up to 40 days. Since the gate is separated from the current path, the switching current can be reduced to 10 μA, which is two orders of magnitude smaller than that of a two-terminal switch. In this paper, we present the operating principle and electrical characteristics of the three-terminal switches, and discuss how suitable they are for reconfigurable circuits.
机译:我们提出了一种三端纳米金属开关,该开关利用固体电解质,其中纳米级金属丝被拉伸和收缩。其工作原理基于电化学反应和电解质中的离子迁移。所制造的器件由固体电解质层(Cu_2S),栅极(Cu),源极(Cu)和漏极(Pt)组成。通过施加漏极电压在源极和漏极之间形成Cu灯丝后,通过控制栅极电压可获得漏极电流中可重复的开/关切换。开/关电流比可高达10〜5,可编程周期约为50。每个状态最多可保存40天。由于栅极与电流路径分开,因此开关电流可以减小至10μA,这比两端开关的电流小两个数量级。在本文中,我们介绍了三端开关的工作原理和电气特性,并讨论了它们如何适用于可重构电路。

著录项

  • 来源
    《Electronics and communications in Japan》 |2011年第4期|p.55-61|共7页
  • 作者单位

    Business Innovation Center, NEC Corporation, Japan Device Platform Laboratories, NEC Corporation, Japan ,' Japan Science and Technology Agency, Japan;

    Device Platform Laboratories, NEC Corporation, Japan ,' Japan Science and Technology Agency, Japan;

    Device Platform Laboratories, NEC Corporation, Japan;

    Device Platform Laboratories, NEC Corporation, Japan;

    Nano System Functionality Center, National Institute for Material Science, Japan;

    ,Device Platform Laboratories, NEC Corporation, Japan;

    Nano System Functionality Center, National Institute for Material Science, Japan Device Platform Laboratories, NEC Corporation, Japan;

    Nano System Functionality Center, National Institute for Material Science, Japan Device Platform Laboratories, NEC Corporation, Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    solid electrolyte; electrochemical reaction; reconfigurable circuit.;

    机译:固体电解质电化学反应可重配置电路。;

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