We report density functional theory (DFT) calculations for gold atoms and dimers on the surface of graphene. The calculations were performed using the plane wave pseudopotential method. Calculations were performed for a variety of geometries, and both the graphene surface and gold atoms were allowed to fully relax. In agreement with experiment, our results show that the gold–gold interaction is considerably stronger than the gold–graphene interaction, implying that uniform coverage could not be attained. The minimum energy configuration for a single gold atom is found to be directly above a carbon atom, while for the dimer it is perpendicular to the surface and directly above a carbon–carbon bond. Our results are consistent with previous s...
[EN] The structure and stabilization of a series of gold (Au-n) clusters (where n = 1, 5, 6, 19 and ...
We calculated the properties of a graphene monolayer on the Ir(111) surface, using the model in whic...
The thermodynamic preference of a foreign atom for adsorption on versus intercalation into a graphit...
Adsorption of gold atoms and clusters (N=6) on a graphite (0001) surface with defects has been studi...
We have studied the effect of Au intercalation on the atomic and electronic structure of the graphen...
In this work, we present the adsorption of AunPtn clusters on graphene surface by using the density-...
We investigate the electronic properties of graphene nanoflakes on Ag(111) and Au(111) surfaces by m...
© 2016 American Chemical Society.Gold-graphene interaction at the interface is evaluated through dif...
The interest in understanding the interaction between graphene and atoms that are adsorbed on its su...
Inspired by recent studies of various two-dimensional (2D) metals such as Au, Fe and Ag, we study th...
The interaction of deposited gold adatoms and dimers with multilayer relaxed graphite surfaces is in...
Using density functional theory with a semiempirical van der Waals approach proposed by Grimme, the ...
The interaction of deposited gold adatoms and dimers with multilayer relaxed graphite surfaces is in...
Gold is widely used in nanotechnology, for example as a substrate in forming self-assembled monolaye...
Soft-landed adsorption of Au-16 on bilayered graphene is investigated using density functional theor...
[EN] The structure and stabilization of a series of gold (Au-n) clusters (where n = 1, 5, 6, 19 and ...
We calculated the properties of a graphene monolayer on the Ir(111) surface, using the model in whic...
The thermodynamic preference of a foreign atom for adsorption on versus intercalation into a graphit...
Adsorption of gold atoms and clusters (N=6) on a graphite (0001) surface with defects has been studi...
We have studied the effect of Au intercalation on the atomic and electronic structure of the graphen...
In this work, we present the adsorption of AunPtn clusters on graphene surface by using the density-...
We investigate the electronic properties of graphene nanoflakes on Ag(111) and Au(111) surfaces by m...
© 2016 American Chemical Society.Gold-graphene interaction at the interface is evaluated through dif...
The interest in understanding the interaction between graphene and atoms that are adsorbed on its su...
Inspired by recent studies of various two-dimensional (2D) metals such as Au, Fe and Ag, we study th...
The interaction of deposited gold adatoms and dimers with multilayer relaxed graphite surfaces is in...
Using density functional theory with a semiempirical van der Waals approach proposed by Grimme, the ...
The interaction of deposited gold adatoms and dimers with multilayer relaxed graphite surfaces is in...
Gold is widely used in nanotechnology, for example as a substrate in forming self-assembled monolaye...
Soft-landed adsorption of Au-16 on bilayered graphene is investigated using density functional theor...
[EN] The structure and stabilization of a series of gold (Au-n) clusters (where n = 1, 5, 6, 19 and ...
We calculated the properties of a graphene monolayer on the Ir(111) surface, using the model in whic...
The thermodynamic preference of a foreign atom for adsorption on versus intercalation into a graphit...