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Morphology and Friction Characterization of CVD Grown Graphene on Polycrystalline Nickel

机译:CVD成长石墨烯对多晶镍的形态和摩擦特性

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Nanoscale friction properties of graphene produced by Mechanical Exfoliation (ME) of graphite crystal and grown by CVD have been studied by Atomic Force Microscopy (AFM). In particular we have analyzed ME graphene deposited on SiO_2 (300 nm oxide) with respect to CVD graphene grown on polycrystalline Ni. We use the AFM in Friction Force Mode (FFM) with force resolution in the nano-newton range and lateral resolution in the nanometer scale. The detailed morphology of the samples, that may strongly influence the friction response at these length scales, has been analyzed by Raman spectroscopy and SEM imaging. We confirm that on ME graphene on SiO_2 friction force decreases film thickness (i.e. increasing the effective number of layers that compose the film). Moreover we verify that the same behavior appears for graphene grown by CVD on polycrystalline Ni substrate indicating that this characteristic is a specific mechanical properties of a few layer film.
机译:通过原子力显微镜(AFM)研究了由机械剥离(ME)石墨晶体和CVD生长的石墨烯的纳米级摩擦性能。特别地,我们已经分析了在多晶Ni上生长的CVD石墨烯沉积在SiO_2(300nm氧化物)上的石墨烯。我们在纳米牛顿范围内用力分辨率和纳米级中的横向分辨率使用摩擦力模式(FFM)的AFM。通过拉曼光谱和SEM成像分析了样品的详细形态,其可能强烈影响这些长度尺度的摩擦响应。我们确认在MEIO_2摩擦力上的石墨烯上降低膜厚度(即增加构成薄膜的有效数量的层)。此外,我们验证了通过CVD在多晶体Ni衬底上生长的Graphene出现的相同行为,表明该特性是几层膜的特定机械性能。

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