Measuring the transport of electrons through a graphene sheet necessarily involves contacting it with metal electrodes. We study the adsorption of graphene on metal substrates using first-principles calculations at the level of density-functional theory. The bonding of graphene to Al, Ag, Cu, Au, and Pt (111) surfaces is so weak that its unique “ultrarelativistic” electronic structure is preserved. The interaction does, however, lead to a charge transfer that shifts the Fermi level by up to 0.5 eV with respect to the conical points. The crossover from p-type to n-type doping occurs for a metal with a work function ~5.4 eV, a value much larger than the work function of free-standing graphene, 4.5 eV. We develop a simple analytical model that...
Nano-sized materials have promising contemporary and novel technological applications as they posses...
The systemic study of the electronic properties of different transition metals (TMs-Sc, Ti, Fe, Co, ...
This work presents first-principles theoretical studies on two topics of condensed matter physics. T...
Making devices with graphene necessarily involves making contacts with metals. We use density functi...
In this paper we show the results of systematic investigations for the electronic-structure modifica...
Graphene, an atom-thick layer of carbon, has been shown to possess unique electronic properties whic...
We study the strength of the binding of 4d and 5d transition metals on a graphene sheet in the limit...
We have performed density-functional-theory calculations to investigate the binding affinities of me...
We study the strength of the binding of 4d and 5d transition metals on a graphene sheet in the limit...
Contains fulltext : 75472.pdf (preprint version ) (Open Access)12 p
This dissertation research is focused on first principles studies of graphene and single organic mol...
The two-dimensional material graphene has numerous potential applications in nano(opto)electronics, ...
Here we present a Density Functional Theory (DFT) study on the suitability of modern corrections for...
First-principles electronic structure calculations based on spin-polarized density functional theory...
The adsorption of alkali metals (AMs) on single layer graphene is studied using first principles met...
Nano-sized materials have promising contemporary and novel technological applications as they posses...
The systemic study of the electronic properties of different transition metals (TMs-Sc, Ti, Fe, Co, ...
This work presents first-principles theoretical studies on two topics of condensed matter physics. T...
Making devices with graphene necessarily involves making contacts with metals. We use density functi...
In this paper we show the results of systematic investigations for the electronic-structure modifica...
Graphene, an atom-thick layer of carbon, has been shown to possess unique electronic properties whic...
We study the strength of the binding of 4d and 5d transition metals on a graphene sheet in the limit...
We have performed density-functional-theory calculations to investigate the binding affinities of me...
We study the strength of the binding of 4d and 5d transition metals on a graphene sheet in the limit...
Contains fulltext : 75472.pdf (preprint version ) (Open Access)12 p
This dissertation research is focused on first principles studies of graphene and single organic mol...
The two-dimensional material graphene has numerous potential applications in nano(opto)electronics, ...
Here we present a Density Functional Theory (DFT) study on the suitability of modern corrections for...
First-principles electronic structure calculations based on spin-polarized density functional theory...
The adsorption of alkali metals (AMs) on single layer graphene is studied using first principles met...
Nano-sized materials have promising contemporary and novel technological applications as they posses...
The systemic study of the electronic properties of different transition metals (TMs-Sc, Ti, Fe, Co, ...
This work presents first-principles theoretical studies on two topics of condensed matter physics. T...