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Surface breakdown dynamics of carbon nanocapsules

机译:碳纳米胶囊的表面击穿动力学

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The structural variation in a single-molecule junction consisting of a hollow multi-walled carbon nanocapsule sandwiched between two gold electrodes during the breakdown of the outermost wall layer was observed in situ by high-resolution transmission electron microscopy. Simultaneously, the current—voltage curve of the junction was measured. The differential conductance of the junction decreased discontinuously from 1 Go (where Go = 2e2/ h is the conductance quantum, e is the electron charge and h is Planck's constant) to 0.5Go and then to 0.2G0 when the total number of wall layers decreased from four to three owing to the breakdown of the outermost layer. The maximum current decreased by 19 μA when the differential conductance decreased discontinuously. Our direct observation of the correlation between the atomistic structure and the conductance provides evidence for electron transport through several layers of the multi-walled nanocapsule, similar to that through carbon nanotubes with their surface in contact with electrodes.
机译:通过高分辨率透射电子显微镜原位观察到在最外壁层破裂期间由夹在两个金电极之间的中空多壁碳纳米空心空心胶囊组成的单分子接合处的结构变化。同时,测量结的电流-电压曲线。结的差分电导从1 Go(其中Go = 2e2 / h是电导量子,e是电子电荷,h是Planck常数)不连续地降低到0.5Go,然后在壁层总数减少时降低到0.2G0由于最外层的故障,从四到三。当差分电导不连续减小时,最大电流减小19μA。我们对原子结构与电导之间关系的直接观察为电子通过多层纳米囊的多层传输提供了证据,类似于通过碳纳米管使其表面与电极接触的电子传递。

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