We study how the Fermi energy of a graphene monolayer separated from a conducting substrate by a dielectric spacer depends on the properties of the substrate and on an applied voltage. An analytical model is developed that describes the Fermi level shift as a function of the gate voltage, of the substrate work function, and of the type and thickness of the dielectric spacer. The parameters of this model, that should describe the effect of gate electrodes in field effect devices, can be obtained from density functional theory (DFT) calculations on single layers or interfaces. The doping of graphene in metal| dielectric| graphene structures is found to be determined not only by the difference in work function between the metal and graphene an...
The experimental results of Metal–graphene (M–G) contact resistance (RC) have been investigated in–d...
textThis dissertation includes work done on graphene and related materials, examining their electron...
Graphene, an atom-thick layer of carbon, has been shown to possess unique electronic properties whic...
Making devices with graphene necessarily involves making contacts with metals. We use density functi...
Measuring the transport of electrons through a graphene sheet necessarily involves contacting it wit...
This paper reviews the theoretical work undertaken using density functional theory (DFT) to explore ...
This dissertation research is focused on first principles studies of graphene and single organic mol...
International audienceThe electronic properties of doped bilayer graphene in presence of bottom and ...
We present a study on the metal-graphene contact properties. Utilizing a dual-gate field-effect tran...
Low contact barrier electrodes and various field-emitting devices require a tunable work function, a...
In the frame work of density functional theoretical calculations, the electronic and lattice dynamic...
Large potential steps are observed at the interfaces between metals and novel 2D materials. They can...
In this thesis, theoretical electronic structure methods have been used to study systems of interest...
International audienceThe mechanisms governing the formation of Schottky barriers at graphene/hydrog...
We report unique electrical anisotropy and dielectric properties of graphene oxide (GO) thin films, ...
The experimental results of Metal–graphene (M–G) contact resistance (RC) have been investigated in–d...
textThis dissertation includes work done on graphene and related materials, examining their electron...
Graphene, an atom-thick layer of carbon, has been shown to possess unique electronic properties whic...
Making devices with graphene necessarily involves making contacts with metals. We use density functi...
Measuring the transport of electrons through a graphene sheet necessarily involves contacting it wit...
This paper reviews the theoretical work undertaken using density functional theory (DFT) to explore ...
This dissertation research is focused on first principles studies of graphene and single organic mol...
International audienceThe electronic properties of doped bilayer graphene in presence of bottom and ...
We present a study on the metal-graphene contact properties. Utilizing a dual-gate field-effect tran...
Low contact barrier electrodes and various field-emitting devices require a tunable work function, a...
In the frame work of density functional theoretical calculations, the electronic and lattice dynamic...
Large potential steps are observed at the interfaces between metals and novel 2D materials. They can...
In this thesis, theoretical electronic structure methods have been used to study systems of interest...
International audienceThe mechanisms governing the formation of Schottky barriers at graphene/hydrog...
We report unique electrical anisotropy and dielectric properties of graphene oxide (GO) thin films, ...
The experimental results of Metal–graphene (M–G) contact resistance (RC) have been investigated in–d...
textThis dissertation includes work done on graphene and related materials, examining their electron...
Graphene, an atom-thick layer of carbon, has been shown to possess unique electronic properties whic...