Density functional theory was used to investigate the effects of doping alkaline earth metal atoms (beryllium, magnesium, calcium and strontium) on graphene. Electron transfer from the dopant atom to the graphene substrate was observed and was further probed by a combined electron localization function/non-covalent interaction (ELF/NCI) approach. This approach demonstrates that predominantly ionic bonding occurs between the alkaline earth dopants and the substrate, with beryllium doping having a variant characteristic as a consequence of electronegativity equalization attributed to its lower atomic number relative to carbon. The ionic bonding induces spin-polarized electronic structures and lower workfunctions for Mg-, Ca-, and Sr-doped gra...
The doping mechanism of graphene with chlorides of low work-function metals was investigated using N...
Density functional calculations are used to analyze the charge transfer doping mechanism by molecule...
Graphene has vast promising applications on the nanoelectronics and spintronics because of its uniqu...
Density functional theory was used to investigate the effects of doping alkaline earth metal atoms (...
Density functional theory was used to investigate the effects of doping alkaline earth metal atoms (...
In this study, the atomic structures and electronic properties of several alkaline earth metals (Ca,...
In view of interest in functionalized carbon nanostructures due to their potential applications in n...
The geometrical, electronic structure, and magnetic properties of the half-metallocene of M (M = Fe,...
Using density functional theory calculations we investigate the electronic structure of graphene dop...
AbstractThe singly B and N doped graphene systems are carefully studied. The highly concentrated dop...
In this study, the interactions of magnesium (Mg) atom and Mg(001) surface with different metal-atom...
Making devices with graphene necessarily involves making contacts with metals. We use density functi...
Electronic systems are an indivisible part of modern life. Every day, new materials, devices, passiv...
A combination of scanning transmission electron microscopy, electron energy loss spectroscopy, and a...
Measuring the transport of electrons through a graphene sheet necessarily involves contacting it wit...
The doping mechanism of graphene with chlorides of low work-function metals was investigated using N...
Density functional calculations are used to analyze the charge transfer doping mechanism by molecule...
Graphene has vast promising applications on the nanoelectronics and spintronics because of its uniqu...
Density functional theory was used to investigate the effects of doping alkaline earth metal atoms (...
Density functional theory was used to investigate the effects of doping alkaline earth metal atoms (...
In this study, the atomic structures and electronic properties of several alkaline earth metals (Ca,...
In view of interest in functionalized carbon nanostructures due to their potential applications in n...
The geometrical, electronic structure, and magnetic properties of the half-metallocene of M (M = Fe,...
Using density functional theory calculations we investigate the electronic structure of graphene dop...
AbstractThe singly B and N doped graphene systems are carefully studied. The highly concentrated dop...
In this study, the interactions of magnesium (Mg) atom and Mg(001) surface with different metal-atom...
Making devices with graphene necessarily involves making contacts with metals. We use density functi...
Electronic systems are an indivisible part of modern life. Every day, new materials, devices, passiv...
A combination of scanning transmission electron microscopy, electron energy loss spectroscopy, and a...
Measuring the transport of electrons through a graphene sheet necessarily involves contacting it wit...
The doping mechanism of graphene with chlorides of low work-function metals was investigated using N...
Density functional calculations are used to analyze the charge transfer doping mechanism by molecule...
Graphene has vast promising applications on the nanoelectronics and spintronics because of its uniqu...