Les excellentes propriétés électroniques, thermiques et mécaniques du graphène confèrent à ce matériau planaire (bi-dimensionnel) un énorme potentiel applicatif, notamment en électronique. Néanmoins, ce matériau présente de sérieux inconvénients qui pourraient limiter son champ d'applications. Par exemple, sa structure de bandes électronique sans bande interdite rend difficile le blocage du courant dans un dispositif. De plus, pour les applications thermoélectriques, sa forte conductance thermique est aussi une forte limitation. Il y a donc beaucoup de défis à relever pour rendre ce matériau vraiment utile pour des applications. Cette thèse porte sur l'étude des propriétés électroniques et thermoélectriques dans les hétérostructures planair...
Using graphene on hexagonal boron nitride (hBN) as an example, we introduce the concept of van der W...
One important attribute of graphene that makes it attractive for high-performance electronics is its...
Graphene combined with Boron Nitride is a superlattice that has a lot of potential in terms of tenab...
Using density functional theory combined with a Green's function scattering approach, we examine the...
The thermoelectric properties of hybrid graphene/boron nitride nanoribbons (BCNNRs) are investigated...
Recent years have witnessed a paradigm shift in the world of electronics. Researchers have not only ...
Le graphène planaire se présente comme un des matériaux les plus prometteurs pour la nanoélectroniqu...
We present a theoretical study of electronic and thermal transport in polycrystalline heterostructur...
We present a theoretical study of electronic and thermal transport in polycrystalline heterostructur...
Thermoelectric effects of graphene – hexagonal boron nitride (hBN) nanoribbons have been investigate...
fundamental understanding of thermal dissipation and energy transport is necessary for designing rob...
Thermoelectric effects of graphene – hexagonal boron nitride (hBN) nanoribbons have been investigate...
fundamental understanding of thermal dissipation and energy transport is necessary for designing rob...
Graphene, a two-dimensional allotrope of graphite with sp2 bonded carbon atoms, is arranged in honey...
Graphene, a two-dimensional allotrope of graphite with sp2 bonded carbon atoms, is arranged in honey...
Using graphene on hexagonal boron nitride (hBN) as an example, we introduce the concept of van der W...
One important attribute of graphene that makes it attractive for high-performance electronics is its...
Graphene combined with Boron Nitride is a superlattice that has a lot of potential in terms of tenab...
Using density functional theory combined with a Green's function scattering approach, we examine the...
The thermoelectric properties of hybrid graphene/boron nitride nanoribbons (BCNNRs) are investigated...
Recent years have witnessed a paradigm shift in the world of electronics. Researchers have not only ...
Le graphène planaire se présente comme un des matériaux les plus prometteurs pour la nanoélectroniqu...
We present a theoretical study of electronic and thermal transport in polycrystalline heterostructur...
We present a theoretical study of electronic and thermal transport in polycrystalline heterostructur...
Thermoelectric effects of graphene – hexagonal boron nitride (hBN) nanoribbons have been investigate...
fundamental understanding of thermal dissipation and energy transport is necessary for designing rob...
Thermoelectric effects of graphene – hexagonal boron nitride (hBN) nanoribbons have been investigate...
fundamental understanding of thermal dissipation and energy transport is necessary for designing rob...
Graphene, a two-dimensional allotrope of graphite with sp2 bonded carbon atoms, is arranged in honey...
Graphene, a two-dimensional allotrope of graphite with sp2 bonded carbon atoms, is arranged in honey...
Using graphene on hexagonal boron nitride (hBN) as an example, we introduce the concept of van der W...
One important attribute of graphene that makes it attractive for high-performance electronics is its...
Graphene combined with Boron Nitride is a superlattice that has a lot of potential in terms of tenab...