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Synthesis of nitrogen-doped epitaxial graphene via plasma-assisted method: Role of the graphene-substrate interaction

机译:等离子体辅助合成氮掺杂外延石墨烯:石墨烯与底物相互作用的作用

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Functionalization of graphene by substitution of carbon with nitrogen atoms is a promising way to tailor its electronic properties, but a good control over the heteroatomic configuration in the graphene network is most often a difficult task. In this paper, the synthesis of N-doped graphene by nitrogen plasma treatment of graphene/Ir(111) is presented. The formation of substitutional, pyrrolic and pyridinic nitrogen is analyzed by means of X-ray photoelectron spectroscopy (XPS) and X-ray photoelectron diffraction (XPD). The graphene-Ir interaction is suggested to control the variation in the relative concentration of the nitrogen species. Annealing of the sample also leads to modifications of the nitrogen species incorporated in the graphene layer. Furthermore, the connection of the substitutional nitrogen arrangement with its corresponding spectroscopic fingerprint is unequivocally confirmed by XPD measurements, which give also a direct insight on the local geometry of the nitrogen atoms incorporated in the carbon network. (C) 2015 Elsevier B.V. All rights reserved.
机译:通过用碳原子取代碳原子来功能化石墨烯是定制其电子性能的一种有前途的方法,但是对石墨烯网络中的杂原子构型进行良好控制通常是一项艰巨的任务。本文介绍了通过氮等离子体处理石墨烯/ Ir(111)合成N掺杂石墨烯的方法。借助于X射线光电子能谱(XPS)和X射线光电子衍射(XPD)来分析取代,吡咯和吡啶二氮的形成。建议石墨烯-Ir相互作用控制氮物种相对浓度的变化。样品的退火还导致掺入石墨烯层中的氮物种的改变。此外,通过XPD测量可以明确地确认取代氮结构与其对应的光谱指纹的连接,这也可以直接了解碳网络中所含氮原子的局部几何形状。 (C)2015 Elsevier B.V.保留所有权利。

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