Adsorption, Clustering and Reaction of Hydrogen atoms on Graphene - Recent years have witnessed an ever growing interest in carbon-based materials. Among them, those formed by sp^2 C atoms comprise graphite, carbon nanotubes, polycyclic aromatic hydrocarbons (PAHs), and recently graphene: the one-atom thick layer of graphite. In this context, the adsorption of atoms from the gas phase on graphene can be used to tailor their electronic and magnetic properties, as already suggested for defects, with the advantage of being much easier to realize than, e.g., vacancies. We show how hydrogen atoms chemisorption induces a magnetic moment on the substrate and influences both thermodinamically and kinetically further atoms adsorptions, up to cluster...
Abstract. We present a systematic ab initio study of atomic hydrogen adsorption on graphene. The cha...
Recent years have witnessed an ever growing interest in the interactions between hydrogen atoms and ...
Hydrogen functionalization of graphene by exposure to vibrationally excited H2 molecules is investig...
Recent years have witnessed an ever increasing interest in studying the interaction of hydrogen atom...
Interaction of hydrogen atoms with graphitic surfaces is currently subject of intense research activ...
Adsorption of hydrogen atoms on a single graphite sheet (graphene) has been investigated by first-pr...
Following previous investigation of collision induced (CI) processes involving hydrogen atoms chemis...
We present a theoretical study of the dynamics of H atoms adsorbed on graphene bilayers with Bernal ...
International audienceElementary interactions between H atoms and monolayer graphene are investigate...
International audienceElementary interactions between H atoms and monolayer graphene are investigate...
International audienceElementary interactions between H atoms and monolayer graphene are investigate...
We present a theoretical study of the dynamics of H atoms adsorbed on graphene bilayers with Bernal ...
The coupled channel method via the Local Reflection (LORE) matrix is employed to investigate the qua...
We present a systematic ab initio study of atomic hydrogen adsorption on graphene. The characteristi...
Although the unconventional $\pi$-magnetism at the zigzag edges of graphene holds promise for a wide...
Abstract. We present a systematic ab initio study of atomic hydrogen adsorption on graphene. The cha...
Recent years have witnessed an ever growing interest in the interactions between hydrogen atoms and ...
Hydrogen functionalization of graphene by exposure to vibrationally excited H2 molecules is investig...
Recent years have witnessed an ever increasing interest in studying the interaction of hydrogen atom...
Interaction of hydrogen atoms with graphitic surfaces is currently subject of intense research activ...
Adsorption of hydrogen atoms on a single graphite sheet (graphene) has been investigated by first-pr...
Following previous investigation of collision induced (CI) processes involving hydrogen atoms chemis...
We present a theoretical study of the dynamics of H atoms adsorbed on graphene bilayers with Bernal ...
International audienceElementary interactions between H atoms and monolayer graphene are investigate...
International audienceElementary interactions between H atoms and monolayer graphene are investigate...
International audienceElementary interactions between H atoms and monolayer graphene are investigate...
We present a theoretical study of the dynamics of H atoms adsorbed on graphene bilayers with Bernal ...
The coupled channel method via the Local Reflection (LORE) matrix is employed to investigate the qua...
We present a systematic ab initio study of atomic hydrogen adsorption on graphene. The characteristi...
Although the unconventional $\pi$-magnetism at the zigzag edges of graphene holds promise for a wide...
Abstract. We present a systematic ab initio study of atomic hydrogen adsorption on graphene. The cha...
Recent years have witnessed an ever growing interest in the interactions between hydrogen atoms and ...
Hydrogen functionalization of graphene by exposure to vibrationally excited H2 molecules is investig...