cited By 10International audienceThe adsorption of iodine atoms and molecules on graphene is studied in detail, using first-principles calculations that include nonlocal correlation effects by means of van der Waals density functional approach. Structural, energetic, and electronic structure properties of these systems are reported. We demonstrate that graphene surface can be doped by atomic and molecular iodine. An upward shift of the Dirac point from the Fermi level with values of 0.45 and 0.08 eV is observed for adsorbed atoms and adsorbed I2, respectively. It corresponds to graphene hole densities to be around 1.2 × 1013-3.9 × 1011 cm-2. We also show that the iodine molecule does not dissociate in contact with pure graphene monolayer. C...
Understanding the interaction between ionic liquids (ILs) and graphene oxide (GO) is essential for t...
The adsorption of H2 on the pristine and Mo-doped graphene was investigated by density functional th...
Graphene is currently the hottest topic in condensed-matter physics and materials science and was is...
cited By 10International audienceThe adsorption of iodine atoms and molecules on graphene is studied...
cited By 10International audienceThe adsorption of iodine atoms and molecules on graphene is studied...
cited By 6International audienceThe presence of polyiodide complexes have been reported several time...
cited By 6International audienceThe presence of polyiodide complexes have been reported several time...
cited By 6International audienceThe presence of polyiodide complexes have been reported several time...
p. 1-8In this work, ab initio density functional theory calculations were performed in order to stud...
The interest in understanding the interaction between graphene and atoms that are adsorbed on its su...
We demonstrate that a reversible semimetallic-to-metallic transition can be realized in monolayer gr...
International audienceGraphene-based two-dimensional materials have attracted an increasing attentio...
We have investigated the electronic properties of 1-, 2-, and 3-layer graphene upon surface adsorpti...
We calculated the properties of a graphene monolayer on the Ir(111) surface, using the model in whic...
Understanding the interaction between ionic liquids (ILs) and graphene oxide (GO) is essential for t...
Understanding the interaction between ionic liquids (ILs) and graphene oxide (GO) is essential for t...
The adsorption of H2 on the pristine and Mo-doped graphene was investigated by density functional th...
Graphene is currently the hottest topic in condensed-matter physics and materials science and was is...
cited By 10International audienceThe adsorption of iodine atoms and molecules on graphene is studied...
cited By 10International audienceThe adsorption of iodine atoms and molecules on graphene is studied...
cited By 6International audienceThe presence of polyiodide complexes have been reported several time...
cited By 6International audienceThe presence of polyiodide complexes have been reported several time...
cited By 6International audienceThe presence of polyiodide complexes have been reported several time...
p. 1-8In this work, ab initio density functional theory calculations were performed in order to stud...
The interest in understanding the interaction between graphene and atoms that are adsorbed on its su...
We demonstrate that a reversible semimetallic-to-metallic transition can be realized in monolayer gr...
International audienceGraphene-based two-dimensional materials have attracted an increasing attentio...
We have investigated the electronic properties of 1-, 2-, and 3-layer graphene upon surface adsorpti...
We calculated the properties of a graphene monolayer on the Ir(111) surface, using the model in whic...
Understanding the interaction between ionic liquids (ILs) and graphene oxide (GO) is essential for t...
Understanding the interaction between ionic liquids (ILs) and graphene oxide (GO) is essential for t...
The adsorption of H2 on the pristine and Mo-doped graphene was investigated by density functional th...
Graphene is currently the hottest topic in condensed-matter physics and materials science and was is...