The electronic properties of epitaxial graphene grown on SiC(0001) are known to be impaired relative to those of freestanding graphene. This is due to the formation of a carbon buffer layer between the graphene layers and the substrate, which causes the graphene layers to become strongly n-doped. Charge neutrality can be achieved by completely passivating the dangling bonds of the clean SiC surface using atomic intercalation. So far, only one element, hydrogen, has been identified as a promising candidate. We show, using first-principles density functional calculations, how it can also be accomplished via the growth of a thin layer of silicon nitride on the SiC surface. The subsequently grown graphene layers display the electronic propertie...
International audienceGraphene exhibits electronic properties that are very sensitive not only to de...
Quasi-free-standing epitaxial graphene is obtained on SiC(0001) by hydrogen intercalation. The hydro...
Graphene with its unique properties spurred the design of nanoscale electronic devices. Graphene fil...
The electronic properties of epitaxial graphene grown on SiC(0001) are known to be impaired relative...
The electronic properties of epitaxial graphene grown on SiC(0001) are known to be impaired relative...
Surface functionalization of epitaxial graphene overlayers on 6H-SiC(0001) has been attempted throug...
© 2018 IOP Publishing Ltd. Growing graphene on SiC thin films on Si is a cheaper alternative to the ...
Graphene on silicon carbide (SiC) bears great potential for future graphene electronic applications ...
We measure the adsorption height of hydrogen-intercalated quasifreestanding monolayer graphene on th...
The properties of epitaxial graphene on SiC substrates can be modified by intercalation of different...
This paper is a report of a discovery that graphene grown on SiC which has previously been treated w...
In this research work, we have investigated the band engineering of epitaxial graphene using first p...
International audienceA strong substrate-graphite bond is found in the first all-carbon layer by den...
International audienceGraphene exhibits electronic properties that are very sensitive not only to de...
International audienceIt has been shown that the first C layer on the SiC(0001)(2×2)C surface alread...
International audienceGraphene exhibits electronic properties that are very sensitive not only to de...
Quasi-free-standing epitaxial graphene is obtained on SiC(0001) by hydrogen intercalation. The hydro...
Graphene with its unique properties spurred the design of nanoscale electronic devices. Graphene fil...
The electronic properties of epitaxial graphene grown on SiC(0001) are known to be impaired relative...
The electronic properties of epitaxial graphene grown on SiC(0001) are known to be impaired relative...
Surface functionalization of epitaxial graphene overlayers on 6H-SiC(0001) has been attempted throug...
© 2018 IOP Publishing Ltd. Growing graphene on SiC thin films on Si is a cheaper alternative to the ...
Graphene on silicon carbide (SiC) bears great potential for future graphene electronic applications ...
We measure the adsorption height of hydrogen-intercalated quasifreestanding monolayer graphene on th...
The properties of epitaxial graphene on SiC substrates can be modified by intercalation of different...
This paper is a report of a discovery that graphene grown on SiC which has previously been treated w...
In this research work, we have investigated the band engineering of epitaxial graphene using first p...
International audienceA strong substrate-graphite bond is found in the first all-carbon layer by den...
International audienceGraphene exhibits electronic properties that are very sensitive not only to de...
International audienceIt has been shown that the first C layer on the SiC(0001)(2×2)C surface alread...
International audienceGraphene exhibits electronic properties that are very sensitive not only to de...
Quasi-free-standing epitaxial graphene is obtained on SiC(0001) by hydrogen intercalation. The hydro...
Graphene with its unique properties spurred the design of nanoscale electronic devices. Graphene fil...