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Structures and electrical properties of single nanoparticle junctions assembled using LaC2-encapsulating carbon nanocapsules

机译:使用LaC2封装的碳纳米胶囊组装的单个纳米粒子结的结构和电性能

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摘要

As the miniaturization of integrated circuits advances, electronics using single molecules and nanosize particles are being studied increasingly. Single nanoparticle junctions (SNPJs) consist of two electrodes sandwiching a single nanoparticle. Nanocarbons with nanospaces in their center, such as fullerenes, carbon nanotubes, and carbon nanocapsules (CNCs), are expected to be elements of advanced SNPJs. In this study, SNPJs were assembled using lanthanum dicarbide (LaC2)-encapsulating CNCs and two gold (Au) electrodes by a nanotip operation inside a high-resolution transmission electron microscope. The atomic configuration and electrical resistance of the SNPJs were investigated in situ. The results implied that the electrical resistance of the SNPJ depended on the interface structures of the contacts between the CNC and Au electrodes, i.e., the contact electrical resistance, and the greatest portion of the current through the SNPJ flowed along the outermost carbon layer of the CNC. Thus, the resistance of the SNPJs using the CNCs was demonstrated and the electrical conduction mechanism of one of the CNC was discussed in this study.
机译:随着集成电路的小型化的发展,越来越多地研究使用单分子和纳米尺寸颗粒的电子产品。单个纳米粒子结(SNPJ)由将单个纳米粒子夹在中间的两个电极组成。中心具有纳米空间的纳米碳,例如富勒烯,碳纳米管和碳纳米胶囊(CNC),有望成为高级SNPJ的元素。在这项研究中,SNPJ的组装使用了包裹二碳酸镧(LaC2)的CNCs和两个金(Au)电极,并通过高分辨率透射电子显微镜内的纳米尖端操作完成。 SNPJs的原子构型和电阻进行了原位研究。结果表明,SNPJ的电阻取决于CNC电极和Au电极之间的接触面的界面结构,即接触电阻,并且流经SNPJ的电流的最大部分沿着碳纳米管最外层的碳层流动。 CNC。因此,本研究证明了使用CNC的SNPJ的电阻,并讨论了其中一个CNC的导电机理。

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