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Clean transfer of graphene for isolation and suspension

机译:干净地转移石墨烯以进行分离和悬浮

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Fabrication of large-area clean graphene sheets is the first step toward the development of high-performance applications in surface chemistry and biotechnology as well as in high-mobility electronics. Here we demonstrate the clean transfer of graphene grown by chemical vapor deposition on Cu foil, with surface cleanness defined by transmission electron microscopy (TEM) in combination with Raman scattering on the same position of suspended graphene sheets. For clean graphene, the Raman spectra exhibit distinctive features that can explicitly discriminate from that of graphene covered with a thin layer of amorphous carbon such as residual poly(methyl methacrylate) (PMMA). By applying this technique to graphene sheets with various degrees of surface cleanness, we show that the quantitative characterization of the thickness of surface contaminants is possible based on multiple reflections and interference of light in samples.
机译:大面积清洁石墨烯片的制造是表面化学和生物技术以及高迁移率电子学领域高性能应用发展的第一步。在这里,我们演示了通过化学气相沉积在铜箔上生长的石墨烯的清洁转移,其表面清洁度由透射电子显微镜(TEM)结合拉曼散射在悬浮石墨烯片材的相同位置上定义。对于干净的石墨烯,拉曼光谱表现出与众不同的特征,这些特征可以明显地与覆盖有无定形碳薄层的石墨烯(例如残留的聚甲基丙烯酸甲酯(PMMA))区分开。通过将此技术应用于具有不同表面清洁度的石墨烯片,我们表明,基于样品中光的多次反射和干涉,可以定量表征表面污染物的厚度。

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