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Parallel Fabrication of Self-Assembled Nanogaps for Molecular Electronic Devices

机译:用于分子电子器件的自组装纳米重组的平行制造

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摘要

Single molecule electronics might be a way to add additional function to nanoscale devices and continue miniaturization beyond current state of the art. Here, a combined top-down and bottom-up strategy is employed to assemble single molecules onto prefabricated electrodes. Protodevices, which are self-assembled nanogaps composed by two gold nanoparticles linked by a single or a few molecules, are guided onto top-down prefabricated nanosized nickel electrodes with sandwiched palladium layers. It is shown that an optimized geometry of multilayered metallic (top-down) electrodes facilitates the assembly of (bottom-up) nanostructures by surface charge interactions. Moreover, such assembly process results in an electrode-nanoparticle interface free from linking molecules that enable electrical measurements to probe electron transport properties of the nanoparticle-molecule-nanoparticle protodevices.
机译:单个分子电子器件可能是向纳米级器件添加额外功能的一种方法,并继续超越现有技术的小型化。 这里,采用组合的自上而下和自下而上的策略将单分子组装在预制电极上。 由由单个或几分子连接的两个金纳米粒子组成的自组装纳米粒子的Protodevice被引导到具有夹层钯层的自上而下的预制纳米级镍电极。 结果表明,多层金属(自上而下)电极的优化几何形状有助于通过表面电荷相互作用使得(自下而上)纳米结构的组装。 此外,这种组装方法导致电极 - 纳米颗粒接口不含连接分子,该分子能够对纳米粒子分子 - 纳米粒子原型的探针电子传输性能进行电气测量。

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  • 来源
    《Small》 |2018年第50期|共6页
  • 作者单位

    Department of Chemistry and Chemical Engineering Chalmers University of Technology Gothenburg 412 96 Sweden;

    Department of Chemistry and Chemical Engineering Chalmers University of Technology Gothenburg 412 96 Sweden;

    Department of Chemistry and Chemical Engineering Chalmers University of Technology Gothenburg 412 96 Sweden;

    Department of Microtechnology and Nanoscience Chalmers University of Technology Gothenburg 412 96 Sweden;

    Department of Chemistry and Chemical Engineering Chalmers University of Technology Gothenburg 412 96 Sweden;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 特种结构材料;
  • 关键词

    molecular electronics; nanofabrication; self-assembly;

    机译:分子电子;纳米制作;自组装;

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