We present Kelvin probe force microscopy measurements of single-and few-layer graphene resting on SiO2 substrates. We compare the layer thickness dependency of the measured surface potential with ab initio density functional theory calculations of the work function for substrate-doped graphene. The ab initio calculations show that the work function of single-and bilayer graphene is mainly given by a variation of the Fermi energy with respect to the Dirac point energy as a function of doping, and that electrostatic interlayer screening only becomes relevant for thicker multilayer graphene. From the Raman G-line shift and the comparison of the Kelvin probe data with the ab initio calculations, we independently find an interlayer screening len...
Few layer graphene and graphite are simultaneously grown on a similar to 100 nm thick polycrystallin...
Abstract. The graphene moire ́ structures on metals, as they demonstrate both long (moiré) and shor...
The intercalation of graphene is an effective approach to modify the electronic properties of two-di...
peer reviewedWe present Kelvin probe force microscopy measurements of single-and few-layer graphene ...
© 2017 Author(s). We report on work function measurements on graphene, which is exfoliated over a pr...
International audienceIf surface effects are neglected, any change of the Fermi level in a semicondu...
A theoretical and experimental study of the work function of few-layer graphene is reported. The inf...
We report variation of the work function for single and bi-layer graphene devices measured by scanni...
Line defects, including grain boundaries and wrinkles, are commonly seen in graphene grown by chemic...
Variability in graphene can result from the material synthesis or post-processing steps as well as t...
We report variation of the work function for single and bilayer graphene devices measured by scannin...
The work function and electronic structure of epitaxial graphene as well as of quasi-freestanding gr...
© 2016 American Chemical Society. Line defects, including grain boundaries and wrinkles, are commonl...
We report variation of the work function for single and bilayer graphene devices measured by scannin...
We report a Kelvin-probe force microscopy (KPFM) investigation on the structural and electronic prop...
Few layer graphene and graphite are simultaneously grown on a similar to 100 nm thick polycrystallin...
Abstract. The graphene moire ́ structures on metals, as they demonstrate both long (moiré) and shor...
The intercalation of graphene is an effective approach to modify the electronic properties of two-di...
peer reviewedWe present Kelvin probe force microscopy measurements of single-and few-layer graphene ...
© 2017 Author(s). We report on work function measurements on graphene, which is exfoliated over a pr...
International audienceIf surface effects are neglected, any change of the Fermi level in a semicondu...
A theoretical and experimental study of the work function of few-layer graphene is reported. The inf...
We report variation of the work function for single and bi-layer graphene devices measured by scanni...
Line defects, including grain boundaries and wrinkles, are commonly seen in graphene grown by chemic...
Variability in graphene can result from the material synthesis or post-processing steps as well as t...
We report variation of the work function for single and bilayer graphene devices measured by scannin...
The work function and electronic structure of epitaxial graphene as well as of quasi-freestanding gr...
© 2016 American Chemical Society. Line defects, including grain boundaries and wrinkles, are commonl...
We report variation of the work function for single and bilayer graphene devices measured by scannin...
We report a Kelvin-probe force microscopy (KPFM) investigation on the structural and electronic prop...
Few layer graphene and graphite are simultaneously grown on a similar to 100 nm thick polycrystallin...
Abstract. The graphene moire ́ structures on metals, as they demonstrate both long (moiré) and shor...
The intercalation of graphene is an effective approach to modify the electronic properties of two-di...