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首页> 外文期刊>The Journal of Chemical Physics >Nanotube-metal junctions: 2-and 3-terminal electrical transport
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Nanotube-metal junctions: 2-and 3-terminal electrical transport

机译:纳米管与金属的连接:2端子和3端子电传输

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We address the quality of electrical contact between carbon nanotubes and metallic electrodes by performing first-principles calculations for the electron transmission through ideal 2- and 3-terminal junctions, thus revealing the physical limit of tube-metal conduction. The structural model constructed involves surrounding the tube by the metal atoms of the electrode as in most experiments; we consider metallic (5,5) and n-doped semiconducting (10,0) tubes surrounded by Au or Pd. In the case of metallic tubes, the contact conductance is shown to approach the ideal 4e(2)/h in the limit of large contact area. For three-terminals, the division of flux among the different transmission channels depends strongly on the metal material. A Pd electrode has nearly perfect tube-electrode transmission and therefore turns off the straight transport along the tube. Our results are in good agreement with some recent experimental reports and clarify a fundamental discrepancy between theory and experiment. (c) 2006 American Institute of Physics.
机译:我们通过对通过理想的2和3端结进行电子传输的第一性原理计算,来解决碳纳米管和金属电极之间电接触的质量问题,从而揭示了管金属传导的物理极限。在大多数实验中,所构造的结构模型包括用电极的金属原子将管包围。我们考虑被Au或Pd包围的金属(5,5)和n掺杂半导体(10,0)管。对于金属管,在大接触面积的限制下,接触电导率显示接近理想的4e(2)/ h。对于三端子,通量在不同传输通道之间的分配在很大程度上取决于金属材料。 Pd电极具有近乎完美的管电极传输能力,因此会关闭沿管的直接传输。我们的结果与最近的一些实验报告非常吻合,并阐明了理论与实验之间的根本差异。 (c)2006年美国物理研究所。

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