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铱(111)表面石墨烯的选择性氢化:一项X射线驻波研究。

Selective hydrogenation of graphene on Ir(111): an X-ray standing wave study.

作者信息

Kastorp Claus F P, Duncan David A, Jørgensen Anders L, Scheffler Martha, Thrower John D, Lee Tien-Lin, Hornekær Liv, Balog Richard

机构信息

Department of Physics and Astronomy, Aarhus University, Aarhus, Denmark.

Diamond Light Source Ltd., Harwell Science and Innovation Campus, Didcot, OX11 0DE, UK.

出版信息

Faraday Discuss. 2022 Aug 25;236(0):178-190. doi: 10.1039/d1fd00122a.

Abstract

A combined high resolution X-ray photoelectron spectroscopy and X-ray standing wave study into the adsorption structure of hydrogenated graphene on Ir(111) is presented. By exploiting the unique absorption profiles and significant modulations in signal intensity found within the X-ray standing wave results, we refine the fitting of the C 1s X-ray photoelectron spectra, allowing us to disentangle the contributions from hydrogenation of graphene in different high-symmetry regions of the moiré supercell. We clearly demonstrate that hydrogenation in the FCC regions results in the formation of a graphane-like structure, giving a standalone component that is separated from the component assigned to the similar structure in the HCP regions. The contribution from dimer structures in the ATOP regions is found to be minor or negligible. This is in contrast to the previous findings where a dimer structure was assumed to contribute significantly to the sp part of the C 1s spectra. The corrugation of the remaining pristine parts of the H-graphene is shown to increase with the H coverage, reflecting an increasing number and size of pinning centers of the graphene to the Ir(111) substrate with increasing H exposure.

摘要

本文介绍了一项结合高分辨率X射线光电子能谱和X射线驻波对氢化石墨烯在Ir(111)上吸附结构的研究。通过利用X射线驻波结果中独特的吸收谱和信号强度的显著调制,我们对C 1s X射线光电子能谱的拟合进行了优化,从而能够区分在莫尔超胞不同高对称区域中石墨烯氢化的贡献。我们清楚地表明,面心立方(FCC)区域的氢化导致类石墨烷结构的形成,产生一个独立的成分,该成分与分配给六方密堆积(HCP)区域中类似结构的成分分开。发现顶位(ATOP)区域中二聚体结构的贡献很小或可忽略不计。这与之前的发现相反,之前的发现认为二聚体结构对C 1s光谱的sp部分有显著贡献。结果表明,H-石墨烯其余原始部分的起伏随着H覆盖率的增加而增大,这反映出随着H暴露量的增加,石墨烯与Ir(111)衬底的钉扎中心数量和尺寸不断增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d74c/9409641/fe2e07029490/d1fd00122a-f1.jpg

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