We present a systematic ab initio study of atomic hydrogen adsorption on graphene. The characteristics of the adsorption process are discussed in relation with the hydrogenation coverage. For systems with high coverage, the resultant strain due to substrate relaxation strongly affects H atom chemisorption. This leads to local structural changes that have not been pointed out to date, namely localized surface curvature. We demonstrate that the hydrogen chemisorption energy barrier is independent of the optimization technique and system size, being associated with the relaxation and rehybridization of the sole adsorbent carbon atom. On the other hand, the H desorption barrier is very sensitive to a correct structural relaxation and is also de...
Ripples of graphene are known to manipulate electronic and hydrogenation properties of graphitic mat...
Density functional calculations of electronic structure, total energy, structural distortions, and m...
Contains fulltext : 34643.pdf (preprint version ) (Closed access)Density functiona...
Abstract. We present a systematic ab initio study of atomic hydrogen adsorption on graphene. The cha...
Adsorption of hydrogen atoms on a single graphite sheet (graphene) has been investigated by first-pr...
International audienceIn this paper, we use density functional theory with dispersion correction fun...
Interaction of hydrogen atoms with graphitic surfaces is currently subject of intense research activ...
In this work, we performed QM/MD simulations to investigate the hydrogenation process on quasi-free-...
The coupled channel method via the Local Reflection (LORE) matrix is employed to investigate the qua...
The ability of atomic hydrogen to chemisorb on graphene makes the latter a promising material for hy...
The ability of atomic hydrogen to chemisorb on graphene makes the latter a promising material for hy...
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 is frequently touted as the "fuel of the future" because of its huge potential as clean ene...
Structural stability and hydrogen adsorption capacity are two key quantities in evaluating the poten...
Ripples of graphene are known to manipulate electronic and hydrogenation properties of graphitic mat...
Density functional calculations of electronic structure, total energy, structural distortions, and m...
Contains fulltext : 34643.pdf (preprint version ) (Closed access)Density functiona...
Abstract. We present a systematic ab initio study of atomic hydrogen adsorption on graphene. The cha...
Adsorption of hydrogen atoms on a single graphite sheet (graphene) has been investigated by first-pr...
International audienceIn this paper, we use density functional theory with dispersion correction fun...
Interaction of hydrogen atoms with graphitic surfaces is currently subject of intense research activ...
In this work, we performed QM/MD simulations to investigate the hydrogenation process on quasi-free-...
The coupled channel method via the Local Reflection (LORE) matrix is employed to investigate the qua...
The ability of atomic hydrogen to chemisorb on graphene makes the latter a promising material for hy...
The ability of atomic hydrogen to chemisorb on graphene makes the latter a promising material for hy...
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 is frequently touted as the "fuel of the future" because of its huge potential as clean ene...
Structural stability and hydrogen adsorption capacity are two key quantities in evaluating the poten...
Ripples of graphene are known to manipulate electronic and hydrogenation properties of graphitic mat...
Density functional calculations of electronic structure, total energy, structural distortions, and m...
Contains fulltext : 34643.pdf (preprint version ) (Closed access)Density functiona...