Single- and multilayer graphene and highly ordered pyrolytic graphite (HOPG) were exposed to a pure hydrogen low-temperature plasma (LTP). Characterizations include various experimental techniques such as photoelectron spectroscopy, Raman spectroscopy and scanning probe microscopy. Our photoemission measurement shows that hydrogen LTP exposed HOPG has a diamond-like valence-band structure, which suggests double-sided hydrogenation. With the scanning tunneling microscopy technique, various atomic-scale charge-density patterns were observed, which may be associated with different C–H conformers. Hydrogen-LTP-exposed graphene on SiO2 has a Raman spectrum in which the D peak to G peak ratio is over 4, associated with hydrogenation on both sides...
Graphane is formed by bonding hydrogen (and deuterium) atoms to carbon atoms in the graphene mesh, w...
Graphane is formed by bonding hydrogen (and deuterium) atoms to carbon atoms in the graphene mesh, w...
International audienceThe hydrogen energy transition is highly probable, because hydrogen is the mos...
Single- and multilayer graphene and highly ordered pyrolytic graphite (HOPG) were exposed to a pure ...
The effects of hydrogenation on the topography and electronic properties of graphene and graphite su...
The effects of hydrogenation on the topography and electronic properties of graphene and graphite su...
We investigate the quality of hydrogen plasma defined graphene edges by Raman spectroscopy, atomic r...
Atomic hydrogen exposures on a monolayer graphene grown on the SiC(0001) surface are shown to result...
Hydrogenation of carbon materials has been attracting a wide range of interests as an application of...
The effects of hydrogenation on the topography and electronic properties of graphene and graphite su...
The effects of hydrogenation on the topography and electronic properties of graphene and graphite su...
The effects of hydrogenation on the topography and electronic properties of graphene and graphite su...
Atomic hydrogen exposures on a monolayer graphene grown on the SiC(0001) surface are shown to result...
The effects of hydrogenation on the topography and electronic properties of graphene and graphite su...
Atomic hydrogen exposures on a monolayer graphene grown on the SiC(0001) surface are shown to result...
Graphane is formed by bonding hydrogen (and deuterium) atoms to carbon atoms in the graphene mesh, w...
Graphane is formed by bonding hydrogen (and deuterium) atoms to carbon atoms in the graphene mesh, w...
International audienceThe hydrogen energy transition is highly probable, because hydrogen is the mos...
Single- and multilayer graphene and highly ordered pyrolytic graphite (HOPG) were exposed to a pure ...
The effects of hydrogenation on the topography and electronic properties of graphene and graphite su...
The effects of hydrogenation on the topography and electronic properties of graphene and graphite su...
We investigate the quality of hydrogen plasma defined graphene edges by Raman spectroscopy, atomic r...
Atomic hydrogen exposures on a monolayer graphene grown on the SiC(0001) surface are shown to result...
Hydrogenation of carbon materials has been attracting a wide range of interests as an application of...
The effects of hydrogenation on the topography and electronic properties of graphene and graphite su...
The effects of hydrogenation on the topography and electronic properties of graphene and graphite su...
The effects of hydrogenation on the topography and electronic properties of graphene and graphite su...
Atomic hydrogen exposures on a monolayer graphene grown on the SiC(0001) surface are shown to result...
The effects of hydrogenation on the topography and electronic properties of graphene and graphite su...
Atomic hydrogen exposures on a monolayer graphene grown on the SiC(0001) surface are shown to result...
Graphane is formed by bonding hydrogen (and deuterium) atoms to carbon atoms in the graphene mesh, w...
Graphane is formed by bonding hydrogen (and deuterium) atoms to carbon atoms in the graphene mesh, w...
International audienceThe hydrogen energy transition is highly probable, because hydrogen is the mos...