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首页> 外文期刊>ACS nano >Luminescence, Patterned Metallic Regions, and Photon-Mediated Electronic Changes in Single-Sided Fluorinated Graphene Sheets
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Luminescence, Patterned Metallic Regions, and Photon-Mediated Electronic Changes in Single-Sided Fluorinated Graphene Sheets

机译:单面氟化石墨烯片中的发光,图案化金属区域和光子介导的电子变化

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摘要

Single-sided fluorination has been predicted to open an electronic band gap in graphene and to exhibit unique electronic and magnetic properties; however, this has not been substantiated by experimental reports. Our comprehensive experimental and theoretical study of this material on a SiC(0001) substrate shows that single-sided fluorographene exhibits two phases, a stable one with a band gap of~6 eV and a metastable one, induced by UV irradiation, with a band gap of~2.5 eV. The metastable structure, which reverts to the stable “ground-state” phase upon annealing under emission of blue light, in our view is induced by defect states, based on the observation of a nondispersive electronic state at the top of the valence band, not unlike that found in organic molecular layers. Our structural data show that the stable C2F ground state has a “boat” structure, in agreement with our X-ray magnetic circular dichroism data, which show the absence of an ordered magnetic phase. A high flux of UV or X-ray photons removes the fluorine atoms, demonstrating the possibility of lithographically patterning conducting regions into an otherwise semiconducting 2D material.
机译:预计单面氟化会在石墨烯中打开电子带隙,并表现出独特的电子和磁性。但是,实验报告并未证实这一点。我们在SiC(0001)衬底上对该材料进行的全面实验和理论研究表明,单面氟石墨烯表现出两个相,一个稳定的带隙为〜6 eV的相,一个被紫外辐射诱导的亚稳态的带。间隙〜2.5 eV。在我们看来,亚稳结构是由缺陷状态引起的,该缺陷状态是在价带顶部观察到非分散电子状态,而不是在蓝光下退火时恢复到稳定的“基态”相。与有机分子层中发现的不同。我们的结构数据表明,稳定的C2F基态具有“船形”结构,这与我们的X射线磁性圆二色性数据一致,后者表明不存在有序磁相。高通量的UV或X射线光子会除去氟原子,这表明有可能将导电区域光刻图案化成其他半导体2D材料。

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