Studies of the interaction between hydrogen and graphene have been increasingly required due to the indispensable modulation of the electronic structure of graphene for device applications and the possibility of using graphene as a hydrogen storage material. Here, we report on the behaviour of molecular hydrogen on graphene using the gate voltage-dependent resistance of single-, bi-, and multi-layer graphene sheets as a function of H-2 gas pressure up to 24 bar from 300 K to 345 K. Upon H-2 exposure, the charge neutrality point shifts toward the negative gate voltage region, indicating n-type doping, and distinct Raman signature changes, increases in the interlayer distance of multi-layer graphene, and a decrease in the d-spacing occur, as ...
Hydrogen functionalization of graphene by exposure to vibrationally excited H2 molecules is investig...
Hydrogenation of carbon materials has been attracting a wide range of interests as an application of...
Single- and multilayer graphene and highly ordered pyrolytic graphite (HOPG) were exposed to a pure ...
To facilitate the dissociative adsorption of H2 molecules on pristine graphene, the addition of a mo...
We report the electron doping of single-layer graphene (SLG) grown by chemical vapor deposition (CVD...
To realize applications of hydrogen-adsorbed graphene, a main issue is how to control hydrogen adsor...
N-type graphene fabricated by exposure to hydrogen gas has been previously studied. Based on this pr...
We have used scanning tunneling microscopy (STM) to investigate two types of hydrogen defect structu...
Graphene showed an unusually high hydrogen storage capacity as well as a unique, slow hydrogen adsor...
We report the electron doping of single-layer graphene (SLG) grown by chemical vapor deposition (CVD...
Single- and multilayer graphene and highly ordered pyrolytic graphite (HOPG) were exposed to a pure ...
20siHydrogen functionalization of graphene by exposure to vibrationally excited H2 molecules is inve...
Hydrogen functionalization of graphene by exposure to vibrationally excited H2 molecules is investig...
Hydrogen functionalization of graphene by exposure to vibrationally excited H2 molecules is investig...
Abstract(#br)On the semi-insulating 4H–SiC (0001) surface, hydrogenated multilayers graphene (MLG) w...
Hydrogen functionalization of graphene by exposure to vibrationally excited H2 molecules is investig...
Hydrogenation of carbon materials has been attracting a wide range of interests as an application of...
Single- and multilayer graphene and highly ordered pyrolytic graphite (HOPG) were exposed to a pure ...
To facilitate the dissociative adsorption of H2 molecules on pristine graphene, the addition of a mo...
We report the electron doping of single-layer graphene (SLG) grown by chemical vapor deposition (CVD...
To realize applications of hydrogen-adsorbed graphene, a main issue is how to control hydrogen adsor...
N-type graphene fabricated by exposure to hydrogen gas has been previously studied. Based on this pr...
We have used scanning tunneling microscopy (STM) to investigate two types of hydrogen defect structu...
Graphene showed an unusually high hydrogen storage capacity as well as a unique, slow hydrogen adsor...
We report the electron doping of single-layer graphene (SLG) grown by chemical vapor deposition (CVD...
Single- and multilayer graphene and highly ordered pyrolytic graphite (HOPG) were exposed to a pure ...
20siHydrogen functionalization of graphene by exposure to vibrationally excited H2 molecules is inve...
Hydrogen functionalization of graphene by exposure to vibrationally excited H2 molecules is investig...
Hydrogen functionalization of graphene by exposure to vibrationally excited H2 molecules is investig...
Abstract(#br)On the semi-insulating 4H–SiC (0001) surface, hydrogenated multilayers graphene (MLG) w...
Hydrogen functionalization of graphene by exposure to vibrationally excited H2 molecules is investig...
Hydrogenation of carbon materials has been attracting a wide range of interests as an application of...
Single- and multilayer graphene and highly ordered pyrolytic graphite (HOPG) were exposed to a pure ...