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Effect of epitaxial graphene morphology on adsorption of ambient species

机译:外延石墨烯形态对环境物质吸附的影响

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This work illustrates the impact of atmospheric gases on the surface of epitaxial graphene. The different rate of adsorption on different parts of graphene samples provides a concrete evidence that the surface morphology of graphene plays a significant role in this process. The uneven adsorption occurs only on the surface of the monolayer graphene and not on bilayer graphene. The second monolayer is distinguished and verified by the phase contrast mode of atomic force microscopy and the low energy electron microscopy, respectively. Raman spectroscopy is used to study the strain on the surface of graphene; results indicate that monolayer and bilayer graphene exhibit different types of strain. The bilayer is under more compressive strain in comparison with monolayer graphene that hinders the process of adsorption. However, the wrinkles and edges of steps of the bilayer are under tensile strain, hence, facilitate adsorption. Samples were subjected to X-ray photoelectron spectroscopy which confirms that the adsorbates on the epitaxial graphene are carbon clusters with nitrogen and oxygen contamination. For reversing the adsorption process the samples are annealed and a method for the removal of these adsorbates is proposed.
机译:这项工作说明了大气气体对外延石墨烯表面的影响。石墨烯样品不同部分的不同吸附速率提供了具体的证据,表明石墨烯的表面形态在该过程中起着重要作用。不均匀吸附仅发生在单层石墨烯的表面上,而不发生在双层石墨烯上。第二个单分子层分别通过原子力显微镜和低能电子显微镜的相衬模式进行区分和验证。拉曼光谱用于研究石墨烯表面的应变。结果表明,单层和双层石墨烯表现出不同类型的应变。与阻碍吸附过程的单层石墨烯相比,双层受到更大的压缩应变。但是,双层台阶的皱纹和边缘处于拉伸应变下,因此易于吸附。对样品进行X射线光电子能谱分析,这证实了外延石墨烯上的吸附物是被氮和氧污染的碳簇。为了使吸附过程逆转,对样品进行退火,并提出了去除这些吸附物的方法。

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