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Benzene, coronene, and circumcoronene adsorbed on gold, and a gold cluster adsorbed on graphene: Structural and electronic properties

机译:吸附在金上的苯,日冕和环己烯,以及吸附在石墨烯上的金簇:结构和电子性能

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摘要

Density functional theory (DFT) calculations were performed in order to investigate the stability and the electronic structure of graphene-gold interfaces. Two configurations were studied: a gold cluster interacting with graphene and different polycyclic aromatic hydrocarbon (PAH) molecules, namely, C6H6 (benzene), C24H12 (coronene), and C54H18 (circumcoronene) adsorbed on an Au(111) surface. Nonlocal interactions were accounted for by using the semiempirical DFT-D2 method of Grimme. A limited set of calculations were also performed by using the first-principles van der Waals density functional method (vdW-DF). Adsorption distances around 3 angstrom and electronic charge transfer values of about (3-13) x 10(-3)e(-) per carbon atom were predicted for all systems. No major changes resulting from the adsorption of the gold cluster were detected in the graphenes density of states. The DFT-D2 results involving the adsorption of the PAH molecules on gold show an estimated binding energy of 73 meV per carbon atom, as well as an electronic charge loss of 0.10 x 10(-2) e(-), also per carbon atom, for an extended graphene sheet adsorbed on a gold surface. The modeling of the adsorption of C6H6 molecule on a gold surface suggests that the vdW-DF method provides more accurate results for the binding energies of such systems, in comparison to pure DFT calculations, which do not take the nonlocal interactions into account, as well as to simulations employing the DFT-D2 method.
机译:为了研究石墨烯-金界面的稳定性和电子结构,进行了密度泛函理论(DFT)计算。研究了两种构型:与石墨烯和吸附在Au(111)表面的C6H6(苯),C24H12(并苯)和C54H18(环戊烯)和不同的多环芳烃(PAH)分子相互作用的金簇。非局部相互作用是通过使用Grimme的半经验DFT-D2方法解决的。还使用第一原理范德华斯密度泛函方法(vdW-DF)进行了一组有限的计算。预测所有系统的吸附距离约为3埃,每个碳原子的电荷转移值约为(3-13)x 10(-3)e(-)。在石墨烯的状态密度中未检测到由金团簇的吸附引起的主要变化。 DFT-D2结果涉及PAH分子在金上的吸附,表明每个碳原子的结合能估计为73 meV,每个碳原子的电子电荷损失为0.10 x 10(-2)e(-)。 ,用于吸附在金表面的延伸石墨烯片。 C6H6分子在金表面上的吸附模型表明,与纯DFT计算相比,vdW-DF方法为此类系统的结合能提供了更准确的结果,该计算也未考虑非局部相互作用关于使用DFT-D2方法的模拟。

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