Graphene Films with Large Domain Size by a Two-Step Chemical Vapor Deposition Process

石墨烯 拉曼光谱 化学气相沉积 材料科学 扫描电子显微镜 微晶 透射电子显微镜 电子迁移率 纳米技术 分析化学(期刊) 化学工程 光电子学 化学 光学 复合材料 有机化学 物理 工程类 冶金
作者
Xuesong Li,Carl W. Magnuson,Archana Venugopal,Jinho An,Ji Won Suk,Boyang Han,Mark D. Borysiak,Weiwei Cai,Aruna Velamakanni,Yanwu Zhu,Liangjie Fu,Eric M. Vogel,E. Voelkl,Luigi Colombo,Rodney S. Ruoff
出处
期刊:Nano Letters [American Chemical Society]
卷期号:10 (11): 4328-4334 被引量:872
标识
DOI:10.1021/nl101629g
摘要

The fundamental properties of graphene are making it an attractive material for a wide variety of applications. Various techniques have been developed to produce graphene and recently we discovered the synthesis of large area graphene by chemical vapor deposition (CVD) of methane on Cu foils. We also showed that graphene growth on Cu is a surface-mediated process and the films were polycrystalline with domains having an area of tens of square microns. In this paper we report on the effect of growth parameters such as temperature, and methane flow rate and partial pressure on the growth rate, domain size, and surface coverage of graphene as determined by Raman spectroscopy, and transmission and scanning electron microscopy. Based on the results, we developed a two-step CVD process to synthesize graphene films with domains having an area of hundreds of square microns. Scanning electron microscopy and Raman spectroscopy clearly show an increase in domain size by changing the growth parameters. Transmission electron microscopy further shows that the domains are crystallographically rotated with respect to each other with a range of angles from about 13 degrees to nearly 30 degrees. Electrical transport measurements performed on back-gated FETs show that overall films with larger domains tend to have higher carrier mobility, up to about 16,000 cm2 V-1 s-1 at room temperature.

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