The Cu-intercalated graphene/Ni(111) surface has been studied by using density-functional theory calculations. We find that (1) the intercalation-induced decoupling between graphene and the Ni(111) substrate begins sharply at a Cu coverage of about 0.75 ML, (2) at the optimal Cu coverage of 1 ML, graphene recovers an almost ideal Dirac-cone band structure with no band gap, and (3) the Dirac point is located at 0.17 eV below the Fermi level, indicating a small charge transfer from the substrate. Cu thus plays essentially the same role as Au in realizing quasi-free-standing graphene by intercalation. Our charge character analysis shows that the Dirac-cone bands near the Fermi level reveal a weakening of their pi character when crossing the Ni...
The effect of the rare-earth (RE) metals (La and Yb) intercalation on the electronic and magnetic pr...
Through intercalation of metals and gases the Dirac cone of graphene on Ir(111) can be shifted with ...
International audienceWe report on the intercalation of a submonolayer of copper at 775K underneath ...
We have studied the effect of Au intercalation on the atomic and electronic structure of the graphen...
Understanding the nature of the interaction at the graphene/metal interfaces is the basis for graphe...
We report the electronic structure of the Au-intercalated graphene/Ni(111) surface using angle-resol...
Graphene, an atom-thick layer of carbon, has been shown to possess unique electronic properties whic...
Graphene on metal substrates often shows different electronic properties from isolated graphene beca...
First-principles calculations based on the density functional theory supplemented with an empirical ...
We report on the structural and electronic properties of an artificial graphene/Ni(111) system obtai...
We report on the structural and electronic properties of an artificial graphene/Ni(111) system obtai...
We present a combined core-level spectroscopy and low-energy electron diffraction study of the evolu...
A combined high-resolution X-ray photoelectron spectroscopy (HR-XPS) and ab initio density functiona...
The structural and electronic properties of graphene coated on a Cu(111) surface can be strongly inf...
The effect of the rare-earth (RE) metals (La and Yb) intercalation on the electronic and magnetic pr...
The effect of the rare-earth (RE) metals (La and Yb) intercalation on the electronic and magnetic pr...
Through intercalation of metals and gases the Dirac cone of graphene on Ir(111) can be shifted with ...
International audienceWe report on the intercalation of a submonolayer of copper at 775K underneath ...
We have studied the effect of Au intercalation on the atomic and electronic structure of the graphen...
Understanding the nature of the interaction at the graphene/metal interfaces is the basis for graphe...
We report the electronic structure of the Au-intercalated graphene/Ni(111) surface using angle-resol...
Graphene, an atom-thick layer of carbon, has been shown to possess unique electronic properties whic...
Graphene on metal substrates often shows different electronic properties from isolated graphene beca...
First-principles calculations based on the density functional theory supplemented with an empirical ...
We report on the structural and electronic properties of an artificial graphene/Ni(111) system obtai...
We report on the structural and electronic properties of an artificial graphene/Ni(111) system obtai...
We present a combined core-level spectroscopy and low-energy electron diffraction study of the evolu...
A combined high-resolution X-ray photoelectron spectroscopy (HR-XPS) and ab initio density functiona...
The structural and electronic properties of graphene coated on a Cu(111) surface can be strongly inf...
The effect of the rare-earth (RE) metals (La and Yb) intercalation on the electronic and magnetic pr...
The effect of the rare-earth (RE) metals (La and Yb) intercalation on the electronic and magnetic pr...
Through intercalation of metals and gases the Dirac cone of graphene on Ir(111) can be shifted with ...
International audienceWe report on the intercalation of a submonolayer of copper at 775K underneath ...