The effects of Li deposition on hydrogenated bilayer graphene on SiC(0001) samples, i.e. on quasi-freestanding bilayer graphene samples, are studied using low energy electron microscopy, micro-low-energy electron diffraction and photoelectron spectroscopy. After deposition, some Li atoms form islands on the surface creating defects that are observed to disappear after annealing. Some other Li atoms are found to penetrate through the bilayer graphene sample and into the interface where H already resides. This is revealed by the existence of shifted components, related to H–SiC and Li–SiC bonding, in recorded core level spectra. The Dirac point is found to exhibit a rigid shift to about 1.25 eV below the Fermi level, indicating strong electro...
The influence of hydrogen exposures on monolayer graphene grown on the silicon terminated SiC(0 0 0 ...
Atomic hydrogen exposures on a monolayer graphene grown on the SiC(0001) surface are shown to result...
Graphene formation on top of SiC(0001) by decoupling the carbon buffer layer through lithium interca...
The effects of Li deposition on hydrogenated bilayer graphene on SiC(0001) samples, i.e. on quasi-fr...
Abstract The effects of Li deposition on hydrogenated bilayer graphene on SiC(0001) samples, i.e. on...
The influence of lithium (Li) exposures on monolayer graphene grown on the silicon-terminated SiC(00...
The effects induced by the deposition of Li on 1 and 0 ML graphene grown on SiC(0001) and after subs...
We investigate the structural and electronic properties of Li-intercalated monolayer graphene on SiC...
We have succeeded in fabricating Li-intercalated bilayer graphene on silicon carbide. The low-energy...
We investigate the structural and electronic properties of Li-intercalated monolayer graphene on SiC...
Studies of the effects induced in the electronic structure after Li deposition, and subsequent heati...
Graphene formation on top of SiC(0001) by decoupling the carbon buffer layer through lithium interca...
Graphene formation on top of SiC(0001) by decoupling the carbon buffer layer through lithium interca...
We studied the influence of defect density in multilayer graphene sheets on the intercalation of Li ...
We studied the influence of defect density in multilayer graphene sheets on the intercalation of Li ...
The influence of hydrogen exposures on monolayer graphene grown on the silicon terminated SiC(0 0 0 ...
Atomic hydrogen exposures on a monolayer graphene grown on the SiC(0001) surface are shown to result...
Graphene formation on top of SiC(0001) by decoupling the carbon buffer layer through lithium interca...
The effects of Li deposition on hydrogenated bilayer graphene on SiC(0001) samples, i.e. on quasi-fr...
Abstract The effects of Li deposition on hydrogenated bilayer graphene on SiC(0001) samples, i.e. on...
The influence of lithium (Li) exposures on monolayer graphene grown on the silicon-terminated SiC(00...
The effects induced by the deposition of Li on 1 and 0 ML graphene grown on SiC(0001) and after subs...
We investigate the structural and electronic properties of Li-intercalated monolayer graphene on SiC...
We have succeeded in fabricating Li-intercalated bilayer graphene on silicon carbide. The low-energy...
We investigate the structural and electronic properties of Li-intercalated monolayer graphene on SiC...
Studies of the effects induced in the electronic structure after Li deposition, and subsequent heati...
Graphene formation on top of SiC(0001) by decoupling the carbon buffer layer through lithium interca...
Graphene formation on top of SiC(0001) by decoupling the carbon buffer layer through lithium interca...
We studied the influence of defect density in multilayer graphene sheets on the intercalation of Li ...
We studied the influence of defect density in multilayer graphene sheets on the intercalation of Li ...
The influence of hydrogen exposures on monolayer graphene grown on the silicon terminated SiC(0 0 0 ...
Atomic hydrogen exposures on a monolayer graphene grown on the SiC(0001) surface are shown to result...
Graphene formation on top of SiC(0001) by decoupling the carbon buffer layer through lithium interca...