We investigate the structural and electronic properties of nitrogen-doped epitaxial monolayer graphene and quasifreestanding monolayer graphene on 6H−SiC(0001) by the normal incidence x-ray standing wave technique and by angle-resolved photoelectron spectroscopy supported by density functional theory simulations. With the location of various nitrogen species uniquely identified, we observe that for the same doping procedure, the graphene support, consisting of substrate and interface, strongly influences the structural as well as the electronic properties of the resulting doped graphene layer. Compared to epitaxial graphene, quasifreestanding graphene is found to contain fewer nitrogen dopants. However, this lack of dopants is compensated b...
Nitrogen doping of graphene is a suitable route to tune the electronic structure of graphene, leadin...
ABSTRACT: Robust methods to tune the unique electronic properties of graphene by chemical modificati...
Electronic systems are an indivisible part of modern life. Every day, new materials, devices, passiv...
Nitrogen-doped epitaxial graphene grown on SiC(000¯1) was prepared by exposing the surface to an ato...
cited By 20International audienceMany potential applications of graphene require either the possibil...
Many potential applications of graphene require either the possibility of tuning its electronic stru...
cited By 21International audienceUnderstanding the modification of the graphene's electronic structu...
We calculated the band structures of a variety of N- and S-doped graphenes in order to understand th...
The structural, energetic, and electronic properties of single-layer graphene doped with boron and n...
Robust methods to tune the unique electronic properties of graphene by chemical modification are in ...
We calculated the band structures of a variety of N- and S-doped graphenes in order to understand th...
We report on experimental and theoretical investigations of nitrogen-doped graphene. The incorporati...
Single–layer and mono–component doped graphene is a crucial platform for a better understanding of t...
Graphene provides a unique platform for the detailed study of its dopants at the atomic level. Previ...
Two-dimensional alloys of carbon and nitrogen draw strong interest due to prospective applications i...
Nitrogen doping of graphene is a suitable route to tune the electronic structure of graphene, leadin...
ABSTRACT: Robust methods to tune the unique electronic properties of graphene by chemical modificati...
Electronic systems are an indivisible part of modern life. Every day, new materials, devices, passiv...
Nitrogen-doped epitaxial graphene grown on SiC(000¯1) was prepared by exposing the surface to an ato...
cited By 20International audienceMany potential applications of graphene require either the possibil...
Many potential applications of graphene require either the possibility of tuning its electronic stru...
cited By 21International audienceUnderstanding the modification of the graphene's electronic structu...
We calculated the band structures of a variety of N- and S-doped graphenes in order to understand th...
The structural, energetic, and electronic properties of single-layer graphene doped with boron and n...
Robust methods to tune the unique electronic properties of graphene by chemical modification are in ...
We calculated the band structures of a variety of N- and S-doped graphenes in order to understand th...
We report on experimental and theoretical investigations of nitrogen-doped graphene. The incorporati...
Single–layer and mono–component doped graphene is a crucial platform for a better understanding of t...
Graphene provides a unique platform for the detailed study of its dopants at the atomic level. Previ...
Two-dimensional alloys of carbon and nitrogen draw strong interest due to prospective applications i...
Nitrogen doping of graphene is a suitable route to tune the electronic structure of graphene, leadin...
ABSTRACT: Robust methods to tune the unique electronic properties of graphene by chemical modificati...
Electronic systems are an indivisible part of modern life. Every day, new materials, devices, passiv...