The mechanism of few-layer graphene growth on the technologically relevant cubic-SiC/Si(001) substrate is uncovered using high-resolution core-level and angle-resolved photoelectron spectroscopy, low-energy electron microscopy, and microspot low-energy electron diffraction. The thickness of the graphitic overlayer supported on the silicon carbide substrate and related changes in the surface structure are precisely controlled by monitoring the progress of the surface graphitization in situ during high-temperature graphene synthesis, using a combination of microspectroscopic techniques. The experimental data reveal gradual changes in the preferential graphene lattice orientations at the initial stages of the few-layer graphene growth on SiC(0...
The formation of graphene on the (0001) surface of SiC (the Si-face) is studied by atomic force micr...
International audienceWe present energy filtered electron emission spectromicroscopy with spatial an...
International audienceWe present energy filtered electron emission spectromicroscopy with spatial an...
The mechanism of few-layer graphene growth on the technologically relevant cubic-SiC/Si(001) substra...
The industrial realization of graphene has so far been limited by challenges related to the quality,...
The industrial realization of graphene has so far been limited by challenges related to the quality,...
The atomic and electronic structure of graphene synthesized on commercially available cubic-SiC(001)...
The atomic and electronic structure of graphene synthesized on commercially available cubic-SiC(001)...
The atomic and electronic structure of graphene synthesized on commercially available cubic SiC 001 ...
The atomic and electronic structure of graphene synthesized on commercially available cubic SiC 001 ...
The atomic and electronic structure of graphene synthesized on commercially available cubic SiC 001 ...
Epitaxial graphene growth was performed on the Si-terminated face of 4H-, 6H-, and 3C-SiC substrates...
The Review Article by Mishra et al. (pp. 2277–2289) provides detailed insight into the graphene grow...
The Review Article by Mishra et al. (pp. 2277–2289) provides detailed insight into the graphene grow...
Graphene is, due to its extraordinary properties, a promising material for future electronic applica...
The formation of graphene on the (0001) surface of SiC (the Si-face) is studied by atomic force micr...
International audienceWe present energy filtered electron emission spectromicroscopy with spatial an...
International audienceWe present energy filtered electron emission spectromicroscopy with spatial an...
The mechanism of few-layer graphene growth on the technologically relevant cubic-SiC/Si(001) substra...
The industrial realization of graphene has so far been limited by challenges related to the quality,...
The industrial realization of graphene has so far been limited by challenges related to the quality,...
The atomic and electronic structure of graphene synthesized on commercially available cubic-SiC(001)...
The atomic and electronic structure of graphene synthesized on commercially available cubic-SiC(001)...
The atomic and electronic structure of graphene synthesized on commercially available cubic SiC 001 ...
The atomic and electronic structure of graphene synthesized on commercially available cubic SiC 001 ...
The atomic and electronic structure of graphene synthesized on commercially available cubic SiC 001 ...
Epitaxial graphene growth was performed on the Si-terminated face of 4H-, 6H-, and 3C-SiC substrates...
The Review Article by Mishra et al. (pp. 2277–2289) provides detailed insight into the graphene grow...
The Review Article by Mishra et al. (pp. 2277–2289) provides detailed insight into the graphene grow...
Graphene is, due to its extraordinary properties, a promising material for future electronic applica...
The formation of graphene on the (0001) surface of SiC (the Si-face) is studied by atomic force micr...
International audienceWe present energy filtered electron emission spectromicroscopy with spatial an...
International audienceWe present energy filtered electron emission spectromicroscopy with spatial an...