Graphene on Ni(111): Strong interaction and weak adsorption
Physical Review B 84(20)
Article 2011 English
Authors
FM
Florian Mittendorfer
AG
Andreas Garhofer
JR
J. Redinger
Abstract
1 min read
The adsorption of graphene on Ni(111) has been investigated on the basis of the adiabatic-connection fluctuation-dissipation theorem in the random phase approximation (RPA). Although we find a significant hybridization between the graphene $\ensuremath{\pi}$ orbitals and Ni ${d}_{{z}^{2}}$ states at a binding distance of 2.17 \AA{}, the adsorption energy is still in the range of a typical physisorption (67 meV per carbon). An important contribution to the energy is related to a decrease in the exchange energy resulting from the adsorption-induced lower symmetry in the graphene layer. The energetics can be well reproduced using the computationally significantly cheaper van der Waals density functional theory with an appropriately chosen exchange-correlation functional.
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