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Conductance measurement of pyridyl-based single molecule junctions with Cu and Au contacts

机译:基于吡啶和铜和金触点的单分子连接的电导率测量

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We studied the conductance of pyridyl-based single molecule junctions with Cu contacts by using an electrochemical jump-to-contact scanning tunneling microscopy break junction (ECSTM-BJ) approach. The single molecule junctions of 4,4′-bipyridine (BPY), 1,2-di(pyridin-4-yl)ethene (BPY-EE) and 1,2-di(pyridin-4-yl)ethane (BPY-EA) bridged with Cu clusters show three sets of conductance values. These values are smaller than the conductance values of single molecule junctions with Au electrodes measured by the traditional scanning tunneling microscopy break junction in acidic or neutral solutions, which can be attributed to the different electronic coupling efficiencies between molecules and electrodes. The consistent conductance of pyridyl-based molecules in acidic and neutral solutions may show that the protonated pyridyl group contacts to the electrode through the deprotonated form.
机译:我们使用电化学跃迁-接触式扫描隧道显微镜断裂连接(ECSTM-BJ)方法研究了与铜接触的基于吡啶基的单分子连接的电导。 4,4'-联吡啶(BPY),1,2-二(吡啶-4-基)乙烯(BPY-EE)和1,2-二(吡啶-4-基)乙烷(BPY-与铜簇桥接的EA)显示了三组电导值。这些值小于在酸性或中性溶液中通过传统扫描隧道显微镜断裂连接所测得的与Au电极的单分子连接的电导率值,这可以归因于分子与电极之间不同的电子耦合效率。吡啶基分子在酸性和中性溶液中的一致电导率可能表明质子化吡啶基通过去质子化形式与电极接触。

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