The celebrated electronic properties of graphene(1,2) have opened the way for materials just one atom thick(3) to be used in the post-silicon electronic era(4). An important milestone was the creation of heterostructures based on graphene and other two-dimensional crystals, which can be assembled into three-dimensional stacks with atomic layer precision(5-7). Such layered structures have already demonstrated a range of fascinating physical phenomena(8-71), and have also been used in demonstrating a prototype field-effect tunnelling transistor(12), which is regarded to be a candidate for post-CMOS (complementary metal-oxide semiconductor) technology. The range of possible materials that could be incorporated into such stacks is very large. I...
Graphene has been one of the most extensively studied materials due to its unique band structure, th...
International audienceWithin the framework of 2D materials, we present four theoretical models of a ...
We study the interactions in graphene/WS<sub>2</sub> two-dimensional (2D) layered vertical heterostr...
An obstacle to the use of graphene as an alternative to silicon electronics has been the absence of ...
An obstacle to the use of graphene as an alternative to silicon electronics has been the absence of ...
In this thesis, field effect transistors (FETs), tunnel barrier transistors (TBTs), and photodetecto...
Vertical integration of van der Waals (vdW) materials into heterostructures with atomic precision is...
We demonstrate field-effect transistors using heterogeneously stacked two-dimensional materials for ...
We study the interactions in graphene/WS2 2D layered vertical heterostructures with variations in th...
Two-dimensional (2D) materials, such as graphene (Gr), transition metal dichalcogenides (TMDs) and h...
Two-dimensional (2D) materials, such as graphene (Gr), transition metal dichalcogenides (TMDs) and h...
We study the interactions in graphene/WS2 2D layered vertical heterostructures with variations in th...
Graphene has been one of the most extensively studied materials due to its unique band structure, th...
Vertical integration of two-dimensional van der Waals materials is predicted to lead to novel electr...
International audienceWithin the framework of 2D materials, we present four theoretical models of a ...
Graphene has been one of the most extensively studied materials due to its unique band structure, th...
International audienceWithin the framework of 2D materials, we present four theoretical models of a ...
We study the interactions in graphene/WS<sub>2</sub> two-dimensional (2D) layered vertical heterostr...
An obstacle to the use of graphene as an alternative to silicon electronics has been the absence of ...
An obstacle to the use of graphene as an alternative to silicon electronics has been the absence of ...
In this thesis, field effect transistors (FETs), tunnel barrier transistors (TBTs), and photodetecto...
Vertical integration of van der Waals (vdW) materials into heterostructures with atomic precision is...
We demonstrate field-effect transistors using heterogeneously stacked two-dimensional materials for ...
We study the interactions in graphene/WS2 2D layered vertical heterostructures with variations in th...
Two-dimensional (2D) materials, such as graphene (Gr), transition metal dichalcogenides (TMDs) and h...
Two-dimensional (2D) materials, such as graphene (Gr), transition metal dichalcogenides (TMDs) and h...
We study the interactions in graphene/WS2 2D layered vertical heterostructures with variations in th...
Graphene has been one of the most extensively studied materials due to its unique band structure, th...
Vertical integration of two-dimensional van der Waals materials is predicted to lead to novel electr...
International audienceWithin the framework of 2D materials, we present four theoretical models of a ...
Graphene has been one of the most extensively studied materials due to its unique band structure, th...
International audienceWithin the framework of 2D materials, we present four theoretical models of a ...
We study the interactions in graphene/WS<sub>2</sub> two-dimensional (2D) layered vertical heterostr...