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Tunnelling in alkanes anchored to gold electrodes via amine end groups

机译:通过胺端基锚定在金电极上的烷烃中的隧穿

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摘要

For investigation of electron transport on the nanoscale, a system possessing a simple-to-interpret electronic structure is composed of alkane chains bridging two electrodes via end groups; to date, the majority of experiments and theoretical investigations on such structures have considered thiols bonding to gold electrodes. Recently experiments show that well-defined molecular conductances may be resolved if the thiol end groups are replaced by amines. In this theoretical study, we investigate the bonding of amine groups to gold clusters and calculate electron transport across the resulting tunnel junctions. We find very good agreement with recent experiments for alkane diamines and discuss differences with respect to the alkane dithiol system.
机译:为了研究纳米级的电子传输,一个具有易于解释的电子结构的系统由烷烃链组成,烷烃链通过端基桥接两个电极。迄今为止,关于这种结构的大多数实验和理论研究都考虑了硫醇与金电极的键合。最近的实验表明,如果巯基端基被胺取代,则可以分辨明确的分子电导。在这项理论研究中,我们研究了胺基团与金簇的键合,并计算了电子在整个隧穿结上的传输。我们发现与烷烃二胺的最新实验非常吻合,并讨论了烷烃二硫醇体系的差异。

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