With the incredible discovery of graphene (Gr), all of the properties studied to date suggest that it has promising applications in the development of semiconductor, spintronic, insulating, and polymer materials. However, efforts are still underway to fully understand the nature of metal–graphone(GrH) interaction in order to offer better scope for tuning the electronic and magnetic properties, which can be performed by intercalation of atoms via metal support on graphene. We chose metal atoms belonging to the s and p blocks, namely Na and Al, respectively, as the intercalating atoms. Herein, the maximum coverage of a monolayer of Na and Al was comparatively studied on a Ni(111) surface. Significant changes in the magnetic and electronic pro...
Decoupling of the graphene layer from the ferromagnetic substrate via intercalation of sp metal has ...
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...
Graphene on metal substrates often shows different electronic properties from isolated graphene beca...
Graphene, an atom-thick layer of carbon, has been shown to possess unique electronic properties whic...
Interfaces between graphene and dissimilar materials are needed for making devices, but those interf...
Resumen del póster presentado a la 10th Conferencia Fuerzas y Túnel, celebrada en Girona (España) de...
Abstract. The article presents the work on the investigation of the surface structure as well as ele...
The role of a metallic substrate in the interaction between 3d transition metal magnetic atoms adsor...
We have studied the effect of Au intercalation on the atomic and electronic structure of the graphen...
First-principles calculations based on the density functional theory supplemented with an empirical ...
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...
In this work, we investigated the effect of Au-intercalation on the magnetic coupling between a sub-...
Experimental and theoretical studies of manganese deposition on graphene/Ni(111) show that a thin fe...
Decoupling of the graphene layer from the ferromagnetic substrate via intercalation of sp metal has ...
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...
Graphene on metal substrates often shows different electronic properties from isolated graphene beca...
Graphene, an atom-thick layer of carbon, has been shown to possess unique electronic properties whic...
Interfaces between graphene and dissimilar materials are needed for making devices, but those interf...
Resumen del póster presentado a la 10th Conferencia Fuerzas y Túnel, celebrada en Girona (España) de...
Abstract. The article presents the work on the investigation of the surface structure as well as ele...
The role of a metallic substrate in the interaction between 3d transition metal magnetic atoms adsor...
We have studied the effect of Au intercalation on the atomic and electronic structure of the graphen...
First-principles calculations based on the density functional theory supplemented with an empirical ...
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...
In this work, we investigated the effect of Au-intercalation on the magnetic coupling between a sub-...
Experimental and theoretical studies of manganese deposition on graphene/Ni(111) show that a thin fe...
Decoupling of the graphene layer from the ferromagnetic substrate via intercalation of sp metal has ...
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...