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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Electronic transport, transition-voltage spectroscopy, and the Fano effect in single molecule junctions composed of a biphenyl molecule attached to metallic and semiconducting carbon nanotube electrodes
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Electronic transport, transition-voltage spectroscopy, and the Fano effect in single molecule junctions composed of a biphenyl molecule attached to metallic and semiconducting carbon nanotube electrodes

机译:电子传输,转换 - 电压光谱和由连接到金属和半导体碳纳米管电极的联苯基分子组成的单分子结中的扇动效应

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摘要

We have investigated electronic transport in a single-molecule junction composed of a biphenyl molecule attached to a p-doped semiconductor and metallic carbon nanotube leads. We find that the current-voltage characteristics are asymmetric as a result of the different electronic natures of the right and left leads, which are metallic and semiconducting, respectively. We provide an analysis of transition voltage spectroscopy in such a system by means of both Fowler-Nordheim and Lauritsen-Millikan plots; this analysis allows one to identify the positions of resonances and the regions where the negative differ-ential conductance occurs. We show that transmittance curves are well described by the Fano lineshape, for both direct and reverse bias, demonstrating that the frontier molecular orbitals are effectively involved in the transport process. This result gives support to the interpretation of transition voltage spectroscopy based on the coherent transport model.
机译:我们已经研究了由附着于P掺杂半导体和金属碳纳米管引线的联苯基分子组成的单分子结中的电子传输。 我们发现电流电压特性由于右侧和左引线的不同电子自然,分别是金属和半导体的结果而不对称。 通过Fowler-Nordheim和Lauritsen-Millikan Plots在这种系统中提供了对这种系统的过渡电压光谱的分析; 该分析允许人们识别共振的位置和所发生负差异导电的区域。 我们表明透射率曲线由Fano Lineshape很好地描述,用于直接和反向偏压,表明前沿分子轨道有效地参与了运输过程。 该结果支持基于相干传输模型对转换电压谱的解释。

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