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Temperature effects on the atomic arrangement and conductance of atomic-size gold nanowires generated by mechanical stretching

机译:温度对机械拉伸产生的原子尺寸金纳米线的原子排列和电导的影响

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We have studied the changes induced by thermal effects in the structural and transport response of Au nanowires generated by mechanical elongation. We have used time-resolved atomic resolution transmission electron microscopy imaging and quantum conductance measurement using a mechanically controllable break junction. Our results showed remarkable differences in the NW evolution for experiments realized at 150 and 300 K, which modifies drastically the conductance response during elongation. Molecular dynamics and electronic transport calculations were used to consistently correlate the observed structural and conductance behavior. These results emphasize that it is essential to take into account the precise atomic arrangement of nanocontacts generated by mechanical stretching to understand electrical transport properties. Also, our study shows that much care must be taken when comparing results obtained in different experimental conditions, mainly different temperatures.
机译:我们已经研究了由机械延伸产生的金纳米线的结构和传输响应中的热效应引起的变化。我们已经使用了时间分辨的原子分辨率透射电子显微镜成像和使用机械可控的断裂结的量子电导测量。我们的结果表明,在150 K和300 K下实现的实验在NW演变中存在显着差异,这大大延长了伸长过程中的电导响应。分子动力学和电子传输计算被用来一致地关联观察到的结构和电导行为。这些结果强调,必须考虑到通过机械拉伸产生的纳米接触的精确原子排列,以了解电传输性质。同样,我们的研究表明,比较在不同实验条件(主要是不同温度)下获得的结果时,必须格外小心。

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