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Tuning the Reactivity of Graphene by Surface Phase Orientation

机译:通过表面相位取向调整石墨烯的反应性

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摘要

Tuning the local reactivity of graphene is a subject of paramount importance. Among the available strategies, the activation/passivation of graphene by copper substrate is very promising because it enables the properties of graphene to be influenced without any transfer procedure, since graphene can be grown directly on copper. Herein, it is demonstrated that the reactivity of graphene towards fluorination is strongly influenced by the face of the surface of the copper substrate. Graphene on the copper foil was probed and grain orientations were identified. The results of the reactivity were evaluated by means of X-ray photo electron and Raman spectroscopy. Graphene on the grains with a surface orientation close to the (111) face is the most reactive, whereas graphene on the grains close to the (110) surface is least reactive. The long-term stability test showed that the decomposition of fluorinated graphene was slowest on the grains with a surface orientation close to the (111) face. The results are consistent with the variation of the mechanical strain of graphene on different faces of copper. In contrast, no clear correlation of the graphene reactivity with doping induced by different facets was found.
机译:调整石墨烯的局部反应性是重要的主题。在可用的策略中,铜衬底的活化/钝化是非常有希望的,因为它能够在没有任何转移过程的情况下影响石墨烯的性质,因为石墨烯可以直接生长在铜上。在此,证明石墨烯对氟化的反应性受到铜基材表面的面部的强烈影响。探针铜箔上的石墨烯,并鉴定晶粒取向。通过X射线光电和拉曼光谱评估反应性的结果。靠近(111)面的表面取向的石墨烯是最具反应性的,而靠近(110)表面的颗粒上的石墨烯是最小的反应性。长期稳定性试验表明,氟化石墨烯的分解在晶粒上最慢,表面取向靠近(111)面。结果与石墨烯机械应变在铜的不同面上的变化一致。相反,没有发现与由不同刻面诱导的掺杂的石墨烯反应性没有明确的相关性。

著录项

  • 来源
    《Chemistry: A European journal 》 |2017年第8期| 共7页
  • 作者单位

    Department of Low-Dimensional Systems J. Heyrovsky Institute of Physical Chemistry Academy of Sciences of the Czech Republic v.v.i. Dolej?kova 3 18223 Prague 8 (Czech Republic);

    Department of Low-Dimensional Systems J. Heyrovsky Institute of Physical Chemistry Academy of Sciences of the Czech Republic v.v.i. Dolej?kova 3 18223 Prague 8 (Czech Republic);

    Department of Low-Dimensional Systems J. Heyrovsky Institute of Physical Chemistry Academy of Sciences of the Czech Republic v.v.i. Dolej?kova 3 18223 Prague 8 (Czech Republic);

    Department of Low-Dimensional Systems J. Heyrovsky Institute of Physical Chemistry Academy of Sciences of the Czech Republic v.v.i. Dolej?kova 3 18223 Prague 8 (Czech Republic);

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 应用化学 ;
  • 关键词

    copper; crystal growth; fluorine; graphene; surface analysis;

    机译:铜;晶体生长;氟;石墨烯;表面分析;

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