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Nucleation and growth kinetics of multi-layered graphene on copper substrate

机译:铜基材上多层石墨烯的成核和生长动力学

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The nucleation and growth kinetics of multilayered graphene on Cu substrates in low pressure chemical vapor deposition is investigated. Uniform millimeter-sized single crystalline graphene grains are formed under high temperature and high hydrogen to methane ratio conditions. Moreover, beneath each first layered grain, we found numerous multi-layered adlayer grains with wide size distribution. Through Raman spectroscopy, atomic force microscopy, and image processing, we quantitatively characterize the graphene growth. We show evidence for non-equilibrium growth kinetics in the adlayer, in contrast to the equilibrium growth kinetics of the first layer. The out-diffused carbon sources from the bulk of catalyst plays important role in the multi-layered graphene growth through generation of new nucleation sites underneath the first layer during the whole growth process. Balance between the role of hydrogen as catalysis and etchant, and the capping area of first layer, are shown to be important factors in determining the eventual multilayer characteristics. (C) 2018 Elsevier Ltd. All rights reserved.
机译:研究了多层石墨烯对低压化学气相沉积的Cu衬里的成核和生长动力学。均匀毫米尺寸的单晶石墨烯晶粒在高温和高氢气下形成为甲烷比率条件。此外,在每个第一层状晶粒下方,我们发现许多具有宽尺寸分布的多层砂粒。通过拉曼光谱,原子力显微镜和图像处理,我们定量表征石墨烯生长。我们展示了Adlayer中非平衡生长动力学的证据,与第一层的平衡生长动力学相反。来自大量催化剂的外扩散碳源在多层石墨烯生长中发挥着重要作用,通过在整个生长过程中产生第一层下面的新成核位点。氢作为催化作用和蚀刻剂的作用之间的平衡,以及第一层的封端面积被认为是确定最终多层特性的重要因素。 (c)2018年elestvier有限公司保留所有权利。

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