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首页> 外文期刊>Applied Surface Science >Low-friction, wear-resistant, and electrically homogeneous multilayer graphene grown by chemical vapor deposition on molybdenum
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Low-friction, wear-resistant, and electrically homogeneous multilayer graphene grown by chemical vapor deposition on molybdenum

机译:通过化学气相沉积在钼上产生低摩擦,耐磨和电均匀的多层石墨烯

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Chemical vapour deposition (CVD) is a promising method for producing large-scale graphene (Gr). Nevertheless, microscopic inhomogeneity of Gr grown on traditional metal substrates such as copper or nickel results in a spatial variation of Gr properties due to long wrinkles formed when the metal substrate shrinks during the cooling part of the production cycle. Recently, molybdenum (Mo) has emerged as an alternative substrate for CVD growth of Gr, mainly due to a better matching of the thermal expansion coefficient of the substrate and Gr. We investigate the quality of multilayer Gr grown on Mo and the relation between Gr morphology and nanoscale mechanical and electrical properties, and spatial homogeneity of these parameters. With atomic force microscopy (AFM) based scratching, Kelvin probe force microscopy, and conducive AFM, we measure friction and wear, surface potential, and local conductivity, respectively. We find that Gr grown on Mo is free of large wrinkles that are common with growth on other metals, although it contains a dense network of small wrinkles. We demonstrate that as a result of this unique and favorable morphology, the Gr studied here has low friction, high wear resistance, and excellent homogeneity of electrical surface potential and conductivity.
机译:化学气相沉积(CVD)是制备大型石墨烯(GR)的有希望的方法。然而,在传统的金属基材上生长的GR的显微透视不均匀性,例如铜或镍导致GR性能的空间变化由于当金属基板在生产循环的冷却部分期间收缩时形成的长皱纹。最近,钼(Mo)作为CVD生长的替代基板,主要是由于基板和GR的热膨胀系数较好的匹配。我们调查了Mo上生长的多层GR的质量以及GR形态与纳米级机电性能的关系,以及这些参数的空间均匀性。采用原子力显微镜(AFM)基于划痕,开尔文探头力显微镜,以及有利于摩擦和磨损,表面电位和局部电导率。我们发现在MO上种植的GR没有大的皱纹,虽然它包含了浓密的小皱纹网络。我们证明,由于这种独特且有利的形态,这里研究的GR摩擦力低,耐磨性高,电气表面电位优异的均匀性和电导率。

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