Abstract Understanding the roles of disorder and metal/graphene interface on the electronic and transport properties of graphene-based systems is crucial for a consistent analysis of the data deriving from experimental measurements. The present work is devoted to the detailed study of graphene nanoribbon systems by means of self-consistent quantum transport calculations. The computational formalism is based on a coupled Schrödinger/Poisson approach that respects both chemistry and electrostatics, applied to pure/defected graphene nanoribbons (ideally or end-contacted by various fcc metals). We theoretically characterize the formation of metal-graphene junctions as well as the effects of backscattering due to the presence of vacancies a...
The atomic edges of graphene nanoribbons with anomalous geometry structure were very recently observ...
I measured the transport properties of graphene nanoribbons as a function of the charged impurity de...
4 páginas, 5 figuras.-- et al.As is common knowledge, armchair graphene nanoribbons (aGNRs) share ma...
We present first-principles transport calculations of graphene nanoribbons with chemically reconstru...
The electronic transport property for a crossed junction of graphene nanoribbons with and without im...
We study numerically the effects of edge and bulk disorder on the conductance of graphene nanoribbon...
In this thesis, we focus on different aspects of electron transport in nanostructured graphene (such...
We study numerically the effects of edge and bulk disorder on the conductance of graphene nanoribbon...
This contribution reports on theoretical studies of electronic transport through graphene nanoribbon...
We report the transport properties of graphene in the presence of topological and (non-topological) ...
ABSTRACT: The unique ultrarelativistic, massless, nature of electron states in two-dimensional exten...
International audienceWe present first-principles calculations of quantum transport in chemically do...
The quantum transport properties of graphene nanoribbon networks are investigated using first-princi...
In recent years, there has been much interest in modelling graphene nanoribbons as they have great p...
As is common knowledge, armchair graphene nanoribbons (aGNRs) share many electronic features with ca...
The atomic edges of graphene nanoribbons with anomalous geometry structure were very recently observ...
I measured the transport properties of graphene nanoribbons as a function of the charged impurity de...
4 páginas, 5 figuras.-- et al.As is common knowledge, armchair graphene nanoribbons (aGNRs) share ma...
We present first-principles transport calculations of graphene nanoribbons with chemically reconstru...
The electronic transport property for a crossed junction of graphene nanoribbons with and without im...
We study numerically the effects of edge and bulk disorder on the conductance of graphene nanoribbon...
In this thesis, we focus on different aspects of electron transport in nanostructured graphene (such...
We study numerically the effects of edge and bulk disorder on the conductance of graphene nanoribbon...
This contribution reports on theoretical studies of electronic transport through graphene nanoribbon...
We report the transport properties of graphene in the presence of topological and (non-topological) ...
ABSTRACT: The unique ultrarelativistic, massless, nature of electron states in two-dimensional exten...
International audienceWe present first-principles calculations of quantum transport in chemically do...
The quantum transport properties of graphene nanoribbon networks are investigated using first-princi...
In recent years, there has been much interest in modelling graphene nanoribbons as they have great p...
As is common knowledge, armchair graphene nanoribbons (aGNRs) share many electronic features with ca...
The atomic edges of graphene nanoribbons with anomalous geometry structure were very recently observ...
I measured the transport properties of graphene nanoribbons as a function of the charged impurity de...
4 páginas, 5 figuras.-- et al.As is common knowledge, armchair graphene nanoribbons (aGNRs) share ma...