Robust methods to tune the unique electronic properties of graphene by chemical modification are in great demand due to the potential of the two dimensional material to impact a range of device applications. Here we show that carbon and nitrogen core-level resonant X-ray spectroscopy is a sensitive probe of chemical bonding and electronic structure of chemical dopants introduced in single-sheet graphene films. In conjunction with density functional theory based calculations, we are able to obtain a detailed picture of bond types and electronic structure in graphene doped with nitrogen at the sub-percent level. We show that different N-bond types, including graphitic, pyridinic, and nitrilic, can exist in a single, dilutely N-doped graphene ...
The doping types of graphene sheets are generally tuned by different dopants with either three or fi...
We use scanning tunneling microscopy and X-ray spectroscopy to characterize the atomic and electroni...
cited By 63International audienceNitrogen-doped epitaxial graphene grown on SiC(0001̄) was prepared ...
ABSTRACT: Robust methods to tune the unique electronic properties of graphene by chemical modificati...
cited By 20International audienceMany potential applications of graphene require either the possibil...
Graphene provides a unique platform for the detailed study of its dopants at the atomic level. Previ...
Many potential applications of graphene require either the possibility of tuning its electronic stru...
Single–layer and mono–component doped graphene is a crucial platform for a better understanding of t...
Chemical doping has been demonstrated to be an effective method for producing high-quality, large-ar...
Two-dimensional alloys of carbon and nitrogen draw strong interest due to prospective applications i...
We investigate the structural and electronic properties of nitrogen-doped epitaxial monolayer graphe...
Doping as one of the popular methods to manipulate the properties of nanomaterials has received exte...
We calculated the band structures of a variety of N- and S-doped graphenes in order to understand th...
We report that the doping of energetic nitrogen cations (N2 +) on graphene effectively controls the ...
We calculated the band structures of a variety of N- and S-doped graphenes in order to understand th...
The doping types of graphene sheets are generally tuned by different dopants with either three or fi...
We use scanning tunneling microscopy and X-ray spectroscopy to characterize the atomic and electroni...
cited By 63International audienceNitrogen-doped epitaxial graphene grown on SiC(0001̄) was prepared ...
ABSTRACT: Robust methods to tune the unique electronic properties of graphene by chemical modificati...
cited By 20International audienceMany potential applications of graphene require either the possibil...
Graphene provides a unique platform for the detailed study of its dopants at the atomic level. Previ...
Many potential applications of graphene require either the possibility of tuning its electronic stru...
Single–layer and mono–component doped graphene is a crucial platform for a better understanding of t...
Chemical doping has been demonstrated to be an effective method for producing high-quality, large-ar...
Two-dimensional alloys of carbon and nitrogen draw strong interest due to prospective applications i...
We investigate the structural and electronic properties of nitrogen-doped epitaxial monolayer graphe...
Doping as one of the popular methods to manipulate the properties of nanomaterials has received exte...
We calculated the band structures of a variety of N- and S-doped graphenes in order to understand th...
We report that the doping of energetic nitrogen cations (N2 +) on graphene effectively controls the ...
We calculated the band structures of a variety of N- and S-doped graphenes in order to understand th...
The doping types of graphene sheets are generally tuned by different dopants with either three or fi...
We use scanning tunneling microscopy and X-ray spectroscopy to characterize the atomic and electroni...
cited By 63International audienceNitrogen-doped epitaxial graphene grown on SiC(0001̄) was prepared ...