The atomic and electronic structures of Cl-intercalated epitaxial graphene on SiC are studied by first-principles calculations. By increasing the Cl concentration, doping levels from n-type to slightly p-type are achieved on the SiC(0001) surface, while a wider range of doping levels is possible on the SiC(000$\overline {1}$ ) surface. We find that the Cl atoms prefer bonding to the substrate rather than to the graphene. By varying the Cl concentration the doping level can be tailored. Consideration of van der Waals forces improves the distance between the graphene and the substrate as well as the binding energy, but it is not essential for the formation energy. For understanding the doping mechanism the introduction of non-local van der Wa...
In this research work, we have investigated the band engineering of epitaxial graphene using first p...
Surface functionalization of epitaxial graphene overlayers on 6H-SiC(0001) has been attempted throug...
International audienceThe atomic and electronic structures of a graphene layer on top of the (2 × 2)...
We systematically study the effects of Gd adsorption and intercalation on the electronic band struct...
The electronic properties of epitaxial graphene grown on SiC(0001) are known to be impaired relative...
Graphene, the first truly 2D material to be isolated, is host to a wealth of remarkable properties. ...
Graphene, the first truly 2D material to be isolated, is host to a wealth of remarkable properties. ...
We investigate the structural and electronic properties of Li-intercalated monolayer graphene on SiC...
The electronic properties of epitaxial graphene grown on SiC(0001) are known to be impaired relative...
We investigate the structural and electronic properties of Li-intercalated monolayer graphene on SiC...
International audienceA strong substrate-graphite bond is found in the first all-carbon layer by den...
AbstractThis paper presents a comparative first principles study of van der Waals heterobilayers der...
Using calculations from first principles we show how specific interface modifications can lead to a ...
Recently huge interest has been focussed on Ge-intercalated graphene. In order to address the effect...
The properties of epitaxial graphene on SiC substrates can be modified by intercalation of different...
In this research work, we have investigated the band engineering of epitaxial graphene using first p...
Surface functionalization of epitaxial graphene overlayers on 6H-SiC(0001) has been attempted throug...
International audienceThe atomic and electronic structures of a graphene layer on top of the (2 × 2)...
We systematically study the effects of Gd adsorption and intercalation on the electronic band struct...
The electronic properties of epitaxial graphene grown on SiC(0001) are known to be impaired relative...
Graphene, the first truly 2D material to be isolated, is host to a wealth of remarkable properties. ...
Graphene, the first truly 2D material to be isolated, is host to a wealth of remarkable properties. ...
We investigate the structural and electronic properties of Li-intercalated monolayer graphene on SiC...
The electronic properties of epitaxial graphene grown on SiC(0001) are known to be impaired relative...
We investigate the structural and electronic properties of Li-intercalated monolayer graphene on SiC...
International audienceA strong substrate-graphite bond is found in the first all-carbon layer by den...
AbstractThis paper presents a comparative first principles study of van der Waals heterobilayers der...
Using calculations from first principles we show how specific interface modifications can lead to a ...
Recently huge interest has been focussed on Ge-intercalated graphene. In order to address the effect...
The properties of epitaxial graphene on SiC substrates can be modified by intercalation of different...
In this research work, we have investigated the band engineering of epitaxial graphene using first p...
Surface functionalization of epitaxial graphene overlayers on 6H-SiC(0001) has been attempted throug...
International audienceThe atomic and electronic structures of a graphene layer on top of the (2 × 2)...