In this work we present a study of the doping of graphene (mono and bi-layer) with atoms of the alkali metal and halogen families. The charge transfer and binding energy between the dopant and the graphene were calculated under the light of the Density Functional Theory using the SIESTA code. The effect of the interaction between the dopant and the graphene to its electronic structure was also analized, focusing on a possible metal-insulator transition. Both the monolayer and the bilayer graphene sheets were doped with lithium (Li), sodium (Na) and potassium (K), among the alkali metals; and with chlorine (Cl) and iodine (I), among the halogens. Furthermore, in the case of the bilayer graphene, we also studied the effect of doping each she...
We have investigated the scenario of graphene when irradiated with high energetic protons and subseq...
The band gap opening of graphene is the most desired property in the device industry because it is v...
This thesis includes work done on graphene-based materials, examining their unique electronic proper...
Graphene is currently the hottest topic in condensed-matter physics and materials science and was is...
Graphene, which is accepted as the main material of nanomaterials, attracts great attention thanks t...
Carbon is one of the most versatile materials available to man, for hundreds of years the 3D forms o...
After its experimental discovery in 2004, graphene has been the topic of intense research. Its extra...
Density functional theory was used to investigate the effects of doping alkaline earth metal atoms (...
International audienceDensity functional calculations including long-range dispersion effects demons...
p. 1-8In this work, ab initio density functional theory calculations were performed in order to stud...
In the frame work of density functional theoretical calculations, the electronic and lattice dynamic...
Density functional theory was used to investigate the effects of doping alkaline earth metal atoms (...
We study how the Fermi energy of a graphene monolayer separated from a conducting substrate by a die...
We present a theoretical study of the localized aspects of the alkali-metal atoms (Li, Na, K) intera...
Low contact barrier electrodes and various field-emitting devices require a tunable work function, a...
We have investigated the scenario of graphene when irradiated with high energetic protons and subseq...
The band gap opening of graphene is the most desired property in the device industry because it is v...
This thesis includes work done on graphene-based materials, examining their unique electronic proper...
Graphene is currently the hottest topic in condensed-matter physics and materials science and was is...
Graphene, which is accepted as the main material of nanomaterials, attracts great attention thanks t...
Carbon is one of the most versatile materials available to man, for hundreds of years the 3D forms o...
After its experimental discovery in 2004, graphene has been the topic of intense research. Its extra...
Density functional theory was used to investigate the effects of doping alkaline earth metal atoms (...
International audienceDensity functional calculations including long-range dispersion effects demons...
p. 1-8In this work, ab initio density functional theory calculations were performed in order to stud...
In the frame work of density functional theoretical calculations, the electronic and lattice dynamic...
Density functional theory was used to investigate the effects of doping alkaline earth metal atoms (...
We study how the Fermi energy of a graphene monolayer separated from a conducting substrate by a die...
We present a theoretical study of the localized aspects of the alkali-metal atoms (Li, Na, K) intera...
Low contact barrier electrodes and various field-emitting devices require a tunable work function, a...
We have investigated the scenario of graphene when irradiated with high energetic protons and subseq...
The band gap opening of graphene is the most desired property in the device industry because it is v...
This thesis includes work done on graphene-based materials, examining their unique electronic proper...