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在商用 Cu-Ni 合金箔上大面积合成和表征石墨烯及石墨薄膜。

Synthesis and characterization of large-area graphene and graphite films on commercial Cu-Ni alloy foils.

机构信息

Department of Mechanical Engineering and the Texas Materials Institute, The University of Texas at Austin, Austin, Texas 78712, United States.

出版信息

Nano Lett. 2011 Sep 14;11(9):3519-25. doi: 10.1021/nl201699j. Epub 2011 Aug 3.

Abstract

Controlling the thickness and uniformity during growth of multilayer graphene is an important goal. Here we report the synthesis of large-area monolayer and multilayer, particularly bilayer, graphene films on Cu-Ni alloy foils by chemical vapor deposition with methane and hydrogen gas as precursors. The dependence of the initial stages of graphene growth rate on the substrate grain orientation was observed for the first time by electron backscattered diffraction and scanning electron microscopy. The thickness and quality of the graphene and graphite films obtained on such Cu-Ni alloy foils could be controlled by varying the deposition temperature and cooling rate and were studied by optical microscopy, scanning electron microscopy, atomic force microscopy, and micro-Raman imaging spectroscopy. The optical and electrical properties of the graphene and graphite films were studied as a function of thickness.

摘要

控制多层石墨烯生长过程中的厚度和均匀性是一个重要目标。在此,我们报告了使用甲烷和氢气作为前驱体,通过化学气相沉积在 Cu-Ni 合金箔上合成大面积单层和多层,特别是双层石墨烯薄膜的方法。通过电子背散射衍射和扫描电子显微镜首次观察到石墨烯生长速率的初始阶段对衬底晶粒取向的依赖性。通过改变沉积温度和冷却速率,可以控制在这种 Cu-Ni 合金箔上获得的石墨烯和石墨薄膜的厚度和质量,并通过光学显微镜、扫描电子显微镜、原子力显微镜和微拉曼成像光谱法进行研究。研究了石墨烯和石墨薄膜的光学和电学性质随厚度的变化。

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