Applying density functional theory we studied magnetism in partially hydrogenated graphene. We demonstrated that the difference in the number of H atoms adsorbed on two graphene sublattices eta can be used as a parameter to predict stability of hydrogen structures on graphene. All favorable structures with even number of H atoms are non-magnetic, with eta equal to zero. Favorable structures with odd number of H adsorbates have eta equal to one, giving rise to a total magnetic moment of 1 mu(B). Structures with higher eta, including recently proposed graphone, are thermodynamically unfavorable and kinetically unstable at room temperature. (C) 2012 Elsevier B. V. All rights reserved
A combined density functional theory and molecular dynamics approach is employed to study modificati...
A combined density functional theory and molecular dynamics approach is employed to study modificati...
A combined density functional theory and molecular dynamics approach is employed to study modificati...
Applying density functional theory we studied magnetism in partially hydrogenated graphene. We demon...
Hydrogenation provides a novel way to tune the electronic properties of graphene. Recent scanning tu...
Contains fulltext : 34643.pdf (preprint version ) (Closed access)Density functiona...
Density functional calculations of electronic structure, total energy, structural distortions, and m...
Graphone is a half-hydrogenated graphene. The structure of graphone is illustrated as trigonal adsor...
ABSTRACT: Nano systems show a wide variety of change in their properties, magnetic properties are no...
We revisit the problem of local moment formation in graphene due to chemisorption of individual atom...
Spin-dependent transport in hydrogenated two-dimensional graphene is explored theoretically. Adsorbe...
Single layer of graphite (graphene) was predicted and later experimentally confirmed to undergo meta...
We have applied first-principle calculations, based on the density functional theory, to a...
Adsorption of hydrogen atoms on a single graphite sheet (graphene) has been investigated by first-pr...
In this work, we performed QM/MD simulations to investigate the hydrogenation process on quasi-free-...
A combined density functional theory and molecular dynamics approach is employed to study modificati...
A combined density functional theory and molecular dynamics approach is employed to study modificati...
A combined density functional theory and molecular dynamics approach is employed to study modificati...
Applying density functional theory we studied magnetism in partially hydrogenated graphene. We demon...
Hydrogenation provides a novel way to tune the electronic properties of graphene. Recent scanning tu...
Contains fulltext : 34643.pdf (preprint version ) (Closed access)Density functiona...
Density functional calculations of electronic structure, total energy, structural distortions, and m...
Graphone is a half-hydrogenated graphene. The structure of graphone is illustrated as trigonal adsor...
ABSTRACT: Nano systems show a wide variety of change in their properties, magnetic properties are no...
We revisit the problem of local moment formation in graphene due to chemisorption of individual atom...
Spin-dependent transport in hydrogenated two-dimensional graphene is explored theoretically. Adsorbe...
Single layer of graphite (graphene) was predicted and later experimentally confirmed to undergo meta...
We have applied first-principle calculations, based on the density functional theory, to a...
Adsorption of hydrogen atoms on a single graphite sheet (graphene) has been investigated by first-pr...
In this work, we performed QM/MD simulations to investigate the hydrogenation process on quasi-free-...
A combined density functional theory and molecular dynamics approach is employed to study modificati...
A combined density functional theory and molecular dynamics approach is employed to study modificati...
A combined density functional theory and molecular dynamics approach is employed to study modificati...