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An electrochemically assisted mechanically controllable break junction approach for single molecule junction conductance measurements

机译:用于单分子结电导率测量的电化学辅助机械可控制的断裂结方法

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摘要

We report an electrochemically assisted mechanically controllable break junction (EC-MCBJ) approach to investigating single molecule conductance. Electrode pairs connected with a gold nanobridge were fabricated by electrochemical deposition and then mounted on a homebuilt MCBJ platform. A large number of Au- molecule-Au junctions were produced sequentially by repeated breaking and reconnecting of the gold nanobridge. In order to measure their single molecule conductance, statistical conductance histograms were generated for benzene-1,4-dithiol (BDT) and 4,4'-bipyridine (BPY). The values extracted from these histograms were found to be in the same range as values previously reported in the literature. Our method is distinct from the ones used to acquire these previously reported literature values, however, in that it is faster, simpler, more cost-effective, and changing the electrode material is more convenient.
机译:我们报告了调查单分子电导的电化学辅助机械可控制的断裂连接(EC-MCBJ)方法。通过电化学沉积制备与金纳米桥连接的电极对,然后将其安装在自制的MCBJ平台上。通过重复断开和重新连接金纳米桥,依次产生了大量的Au分子-Au结。为了测量其单分子电导,生成了苯-1,4-二硫醇(BDT)和4,4'-联吡啶(BPY)的统计电导直方图。发现从这些直方图提取的值与文献中先前报道的值在相同范围内。我们的方法与用于获取这些先前报道的文献值的方法不同,但是它更快,更简单,更具成本效益,并且更换电极材料更方便。

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