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Core Level Spectra of Organic Molecules Adsorbed on Graphene

石墨烯 氧烷 化学吸附 结合能 材料科学 激发态 X射线光电子能谱 密度泛函理论 分子 吡啶 吸附 化学物理 谱线 光化学 化学 原子物理学 物理化学 计算化学 纳米技术 有机化学 核磁共振 物理 天文
作者
Abhilash Ravikumar,G. P. Brivio,Guido Fratesi
出处
期刊:Materials [Multidisciplinary Digital Publishing Institute]
卷期号:11 (4): 518-518 被引量:2
标识
DOI:10.3390/ma11040518
摘要

We perform first principle calculations based on density functional theory to investigate the effect of the adsorption of core-excited organic molecules on graphene. We simulate Near Edge X-ray absorption Fine Structure (NEXAFS) and X-ray Photoemission Spectroscopy (XPS) at the N and C edges for two moieties: pyridine and the pyridine radical on graphene, which exemplify two different adsorption characters. The modifications of molecular and graphene energy levels due to their interplay with the core-level excitation are discussed. We find that upon physisorption of pyridine, the binding energies of graphene close to the adsorption site reduce mildly, and the NEXAFS spectra of the molecule and graphene resemble those of gas phase pyridine and pristine graphene, respectively. However, the chemisorption of the pyridine radical is found to significantly alter these core excited spectra. The C 1s binding energy of the C atom of graphene participating in chemisorption increases by ∼1 eV, and the C atoms of graphene alternate to the adsorption site show a reduction in the binding energy. Analogously, these C atoms also show strong modifications in the NEXAFS spectra. The NEXAFS spectrum of the chemisorbed molecule is also modified as a result of hybridization with and screening by graphene. We eventually explore the electronic properties and magnetism of the system as a core-level excitation is adiabatically switched on.

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