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Poisson's ratio of individual metal nanowires

机译:单个金属纳米线的泊松比

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The measurement of Poisson's ratio of nanomaterials is extremely challenging. Here we report a lateral atomic force microscope experimental method to electromechanically measure the Poisson's ratio and gauge factor of individual nanowires. Under elastic loading conditions we monitor the four-point resistance of individual metallic nanowires as a function of strain and different levels of electrical stress. We determine the gauge factor of individual wires and directly measure the Poisson's ratio using a model that is independently validated for macroscopic wires. For macroscopic wires and nickel nanowires we find Poisson's ratios that closely correspond to bulk values, whereas for silver nanowires significant deviations from the bulk silver value are observed. Moreover, repeated measurements on individual silver nanowires at different levels of mechanical and electrical stress yield a small spread in Poisson ratio, with a range of mean values for different wires, all of which are distinct from the bulk value.
机译:泊松纳米材料比的测量极具挑战性。在这里,我们报告了横向原子力显微镜实验方法,以机电方式测量单个纳米线的泊松比和应变系数。在弹性载荷条件下,我们监测单个金属纳米线的四点电阻与应变和不同水平的电应力的关系。我们确定单个导线的规格因子,并使用针对宏观导线独立验证的模型直接测量泊松比。对于宏观线和镍纳米线,我们发现泊松比与体积值紧密对应,而对于银纳米线,则观察到与体积银值的显着偏差。此外,在不同水平的机械应力和电应力下对单个银纳米线进行重复测量会产生泊松比的较小分布,且不同导线的平均值范围不同,所有这些均与体积值不同。

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