The influence of hydrogen exposures on monolayer graphene grown on the silicon terminated SiC(0 0 0 1) surface is investigated using photoelectron spectroscopy (PES), low-energy electron microscopy (LEEM) and micro low-energy electron diffraction (mu-LEED). Exposures to ionized hydrogen are shown to have a pronounced effect on the carbon buffer (interface) layer. Exposures to atomic hydrogen are shown to actually convert/transform the monolayer graphene plus carbon buffer layer to bi-layer graphene, i.e. to produce carbon buffer layer free bi-layer graphene on SiC(0 0 0 1). This process is shown to be reversible, so the initial monolayer graphene plus carbon buffer layer situation is recreated after heating to a temperature of about 950 deg...
The effects of Li deposition on hydrogenated bilayer graphene on SiC(0001) samples, i.e. on quasi-fr...
We have measured optical absorption in mid-infrared spectral range on hydrogen intercalated single l...
The properties of epitaxial graphene on SiC substrates can be modified by intercalation of different...
Atomic hydrogen exposures on a monolayer graphene grown on the SiC(0001) surface are shown to result...
Atomic hydrogen exposures on a monolayer graphene grown on the SiC(0001) surface are shown to result...
Atomic hydrogen exposures on a monolayer graphene grown on the SiC(0001) surface are shown to result...
Atomic hydrogen exposures on a monolayer graphene grown on the SiC(0001) surface are shown to result...
In this paper we discuss and review results of recent studies of epitaxial growth of graphene on sil...
In this paper we discuss and review results of recent studies of epitaxial growth of graphene on sil...
In this paper we discuss and review results of recent studies of epitaxial growth of graphene on sil...
Quasi-free-standing epitaxial graphene is obtained on SiC(0001) by hydrogen intercalation. The hydro...
The effects of Li deposition on hydrogenated bilayer graphene on SiC(0001) samples, i.e. on quasi-fr...
On the SiC(0001) surface (the silicon face of SiC), epitaxial graphene is obtained by sublimation of...
On the SiC(0001) surface (the silicon face of SiC), epitaxial graphene is obtained by sublimation of...
We report on an investigation of quasi-free-standing graphene on 6H-SiC(0001) which was prepared by ...
The effects of Li deposition on hydrogenated bilayer graphene on SiC(0001) samples, i.e. on quasi-fr...
We have measured optical absorption in mid-infrared spectral range on hydrogen intercalated single l...
The properties of epitaxial graphene on SiC substrates can be modified by intercalation of different...
Atomic hydrogen exposures on a monolayer graphene grown on the SiC(0001) surface are shown to result...
Atomic hydrogen exposures on a monolayer graphene grown on the SiC(0001) surface are shown to result...
Atomic hydrogen exposures on a monolayer graphene grown on the SiC(0001) surface are shown to result...
Atomic hydrogen exposures on a monolayer graphene grown on the SiC(0001) surface are shown to result...
In this paper we discuss and review results of recent studies of epitaxial growth of graphene on sil...
In this paper we discuss and review results of recent studies of epitaxial growth of graphene on sil...
In this paper we discuss and review results of recent studies of epitaxial growth of graphene on sil...
Quasi-free-standing epitaxial graphene is obtained on SiC(0001) by hydrogen intercalation. The hydro...
The effects of Li deposition on hydrogenated bilayer graphene on SiC(0001) samples, i.e. on quasi-fr...
On the SiC(0001) surface (the silicon face of SiC), epitaxial graphene is obtained by sublimation of...
On the SiC(0001) surface (the silicon face of SiC), epitaxial graphene is obtained by sublimation of...
We report on an investigation of quasi-free-standing graphene on 6H-SiC(0001) which was prepared by ...
The effects of Li deposition on hydrogenated bilayer graphene on SiC(0001) samples, i.e. on quasi-fr...
We have measured optical absorption in mid-infrared spectral range on hydrogen intercalated single l...
The properties of epitaxial graphene on SiC substrates can be modified by intercalation of different...