International audienceElementary interactions between H atoms and monolayer graphene are investigated using classical molecular dynamics (CMD) and density functional theory (DFT). C-H interatomic potential curves and associated energy barriers are reported depending on the H impact position (top, bridge, hollow, vacancy, or edge sites of graphene nanoribbons). Chemisorption of atomic hydrogen and formation of molecular hydrogen from chemisorbed H states on graphene are examined. The influence of graphene temperature and incident species energy on adsorption, reflection, and penetration mechanisms is also presented. Except for impacts at graphene nanoribbon (GNR) edges or at defect locations, H atoms are shown to experience a repulsive force...
Dissociative adsorption of impinging gas-phase molecular hydrogen (H2) on a palladium cluster (Pd4) ...
Hydrogen functionalization of graphene by exposure to vibrationally excited H2 molecules is investig...
A combined density functional theory and molecular dynamics approach is employed to study modificati...
International audienceElementary interactions between H atoms and monolayer graphene are investigate...
International audienceElementary interactions between H atoms and monolayer graphene are investigate...
International audienceTo assist the development of plasma processes to pattern graphene in a control...
International audienceTo assist the development of plasma processes to pattern graphene in a control...
We examine in this paper the associative desorption of two hydrogen atoms on a slab model that mimic...
Interaction of hydrogen atoms with graphitic surfaces is currently subject of intense research activ...
We investigate the interaction of the H-2 molecule with a graphene layer and with a small-radius car...
We investigate the interaction of the H-2 molecule with a graphene layer and with a small-radius car...
Hydrogen functionalization of graphene by exposure to vibrationally excited H2 molecules is investig...
This study aims at generating fundamental knowledge of the interaction of hydrated protons (hydroniu...
Hydrogen functionalization of graphene by exposure to vibrationally excited H2 molecules is investig...
Dissociative adsorption of impinging gas-phase molecular hydrogen (H2) on a palladium cluster (Pd4) ...
Dissociative adsorption of impinging gas-phase molecular hydrogen (H2) on a palladium cluster (Pd4) ...
Hydrogen functionalization of graphene by exposure to vibrationally excited H2 molecules is investig...
A combined density functional theory and molecular dynamics approach is employed to study modificati...
International audienceElementary interactions between H atoms and monolayer graphene are investigate...
International audienceElementary interactions between H atoms and monolayer graphene are investigate...
International audienceTo assist the development of plasma processes to pattern graphene in a control...
International audienceTo assist the development of plasma processes to pattern graphene in a control...
We examine in this paper the associative desorption of two hydrogen atoms on a slab model that mimic...
Interaction of hydrogen atoms with graphitic surfaces is currently subject of intense research activ...
We investigate the interaction of the H-2 molecule with a graphene layer and with a small-radius car...
We investigate the interaction of the H-2 molecule with a graphene layer and with a small-radius car...
Hydrogen functionalization of graphene by exposure to vibrationally excited H2 molecules is investig...
This study aims at generating fundamental knowledge of the interaction of hydrated protons (hydroniu...
Hydrogen functionalization of graphene by exposure to vibrationally excited H2 molecules is investig...
Dissociative adsorption of impinging gas-phase molecular hydrogen (H2) on a palladium cluster (Pd4) ...
Dissociative adsorption of impinging gas-phase molecular hydrogen (H2) on a palladium cluster (Pd4) ...
Hydrogen functionalization of graphene by exposure to vibrationally excited H2 molecules is investig...
A combined density functional theory and molecular dynamics approach is employed to study modificati...