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Mechanically controllable break-junctions for use as electrodes for molecular electronics

机译:机械可控制的断裂结,用作分子电子学的电极

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We discuss the use of mechanically controllable break-junctions (MCBs) as electrodes for contacting individual objects such as clusters or molecules. A big advantage of MCB electrodes is the possibility of varying the contact geometry and, accordingly, the contact resistances and the quantum coherent transport properties between the object under study and the electrodes. We compare the suitability of single-atom contacts of different elements as electrode material. Finally, we present preliminary results on electronic transport through individual (or a few) fullerene molecules contacted by gold MCB electrodes. The typical resistances are in the order of the quantum of conductance. The circuits sustain voltages of the order of 1 V and are mechanically more stable than single-atom contacts between the gold electrodes alone.
机译:我们讨论了使用机械可控的断开结(MCB)作为接触单个物体(例如簇或分子)的电极。 MCB电极的一大优势是可以改变接触几何形状,从而可以改变被研究物体与电极之间的接触电阻和量子相干传输特性。我们比较了不同元素的单原子接触作为电极材料的适用性。最后,我们介绍了通过金MCB电极接触的单个(或几个)富勒烯分子进行电子传输的初步结果。典型的电阻约为电导的量级。与仅金电极之间的单原子接触相比,电路可承受1 V的电压,并且在机械上更稳定。

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