The interest in understanding the interaction between graphene and atoms that are adsorbed on its surface (adatoms) spans a wide range of research fields and applications, for example, to controllably change the properties of graphene in electronic devices or to detect those changes in graphene-based sensors. We present a density functional theory study of the interaction between graphene and Hg adatoms. Binding energy, electronic structure and electric field gradient (EFG) were calculated for various high-symmetry atomic configurations, from isolated adatoms to a continuous Hg monolayer. Hg as isolated adatom was found to be the most stable configuration, with a binding energy of 188 meV. Whereas isolated adatoms have a minor effect on the...
International audienceGraphene-based two-dimensional materials have attracted an increasing attentio...
Density functional theory studies are reported to analyze the interaction between hydrogen sulfide (...
The adsorption of H2 on the pristine and Mo-doped graphene was investigated by density functional th...
We examined the interaction between adatoms and graphene for Ag, Cd, In and Hg by density functional...
Measuring the transport of electrons through a graphene sheet necessarily involves contacting it wit...
In this study, the adsorption influence of two different metals, gallium (Ga) and arsenide (As) adat...
This paper investigates the adsorption of carbon adatoms on graphene and its nanoribbons using first...
Nano-sized materials have promising contemporary and novel technological applications as they posses...
We have characterized the C−H stretching vibrations of hydrogenated graphene on gold substrates usin...
p. 1-8In this work, ab initio density functional theory calculations were performed in order to stud...
We study the strength of the binding of 4d and 5d transition metals on a graphene sheet in the limit...
We report density functional theory (DFT) calculations for gold atoms and dimers on the surface of g...
The systemic study of the electronic properties of different transition metals (TMs-Sc, Ti, Fe, Co, ...
Graphene and GaAs nanostructures are well-known materials that have potential application in modern ...
The systemic study of the electronic properties of different transition metals (TMs-Sc, Ti, Fe, Co, ...
International audienceGraphene-based two-dimensional materials have attracted an increasing attentio...
Density functional theory studies are reported to analyze the interaction between hydrogen sulfide (...
The adsorption of H2 on the pristine and Mo-doped graphene was investigated by density functional th...
We examined the interaction between adatoms and graphene for Ag, Cd, In and Hg by density functional...
Measuring the transport of electrons through a graphene sheet necessarily involves contacting it wit...
In this study, the adsorption influence of two different metals, gallium (Ga) and arsenide (As) adat...
This paper investigates the adsorption of carbon adatoms on graphene and its nanoribbons using first...
Nano-sized materials have promising contemporary and novel technological applications as they posses...
We have characterized the C−H stretching vibrations of hydrogenated graphene on gold substrates usin...
p. 1-8In this work, ab initio density functional theory calculations were performed in order to stud...
We study the strength of the binding of 4d and 5d transition metals on a graphene sheet in the limit...
We report density functional theory (DFT) calculations for gold atoms and dimers on the surface of g...
The systemic study of the electronic properties of different transition metals (TMs-Sc, Ti, Fe, Co, ...
Graphene and GaAs nanostructures are well-known materials that have potential application in modern ...
The systemic study of the electronic properties of different transition metals (TMs-Sc, Ti, Fe, Co, ...
International audienceGraphene-based two-dimensional materials have attracted an increasing attentio...
Density functional theory studies are reported to analyze the interaction between hydrogen sulfide (...
The adsorption of H2 on the pristine and Mo-doped graphene was investigated by density functional th...