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Density functional theory calculations on transition metal atoms adsorbed on graphene monolayers

机译:石墨烯单层吸附过渡金属原子的密度泛函理论计算

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Transition metal atom adsorption on graphene monolayers has been elucidated using periodic density functional theory under hybrid and generalized gradient approximation functionals. More specifically, we examined the adsorption of Cu, Fe, Zn, Ru, and Os on graphene monolayers by calculating, among others, the electronic density-of-states spectra of the adatom-graphene system and the overlap populations of the adatom with the nearest adsorbing graphene carbon atoms. These calculations reveal that Cu form primarily covalent bonds with graphene atoms via strong hybridization between the adatom orbitals and the sp band of the graphene substrate, whereas the interaction of the Ru and Os with graphene also contain ionic parts. Although the interaction of Fe with graphene atoms is mostly covalent, some charge transfer to graphene is also observed. The interaction of Zn with graphene is weak. Mulliken population analysis and charge contour maps are used to elucidate charge transfers between the adatom and the substrate. The adsorption strength is correlated with the metal adsorption energy and the height of the metal adatom from the graphene plane for the geometrically optimized adatom-graphene system. Our analysis shows that show that metal adsorption strength follows the adatom trend Ru approximate to Os > Fe > Cu > Zn, as verified by corresponding changes in the adsorption energies. The increased metal-carbon orbital overlap for the Ru relative to Os adatom is attributed to hybridization defects. (C) 2016 Elsevier B.V. All rights reserved.
机译:在混合和广义梯度近似功能下,使用周期密度泛函理论阐明了过渡金属原子在石墨烯单层上的吸附。更具体而言,我们通过计算除其他因素外,石墨烯单分子系统的电子态密度谱以及原子与碳原子的重叠量,研究了石墨烯单层上Cu,Fe,Zn,Ru和Os的吸附。最近吸附的石墨烯碳原子。这些计算表明,Cu通过石墨烯基底的原子原子轨道和sp带之间的强杂交,主要与石墨烯原子形成共价键,而Ru和Os与石墨烯的相互作用也包含离子部分。尽管Fe与石墨烯原子的相互作用大多数是共价的,但也观察到一些电荷转移到石墨烯上。 Zn与石墨烯的相互作用较弱。 Mulliken种群分析和电荷等高线图用于阐明吸附原子和基质之间的电荷转移。对于几何优化的吸附原子-石墨烯系统,吸附强度与金属吸附能和金属吸附原子相对于石墨烯平面的高度相关。我们的分析表明,金属吸附强度遵循吸附原子趋势Ru近似为Os> Fe> Cu> Zn,这已通过相应的吸附能变化得到证实。相对于Os原子,Ru的金属-碳轨道重叠增加是归因于杂交缺陷。 (C)2016 Elsevier B.V.保留所有权利。

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