Despite numerous studies on two-dimensional van der Waals heterostructures, a full understanding of the charge transport and photoinduced current mechanisms in these structures, in particular, associated with charge depletion/inversion layers at the interface remains elusive. Here, we investigate transport properties of a prototype multilayer MoS2/WSe2 heterojunction via a tunable charge inversion/depletion layer. A charge inversion layer was constructed at the surface of WSe2 due to its relatively low doping concentration compared to that of MoS2, which can be tuned by the back-gate bias. The depletion region was limited within a few nanometers in the MoS2 side, while charges are fully depleted on the whole WSe2 side, which are determined ...
Electrical and optical characteristics of few-layered (3–4 L) chemical vapor deposition (CVD) grown ...
Two-dimensional (2D) layered materials are emerging candidates for future high-performance electroni...
Two-dimensional (2D) layered materials are emerging candidates for future high-performance electroni...
Despite numerous studies on two-dimensional van der Waals heterostructures, a full understanding of ...
The vertical stacking of van der Waals (vdW) materials introduces a new degree of freedom to the res...
International audienceVan der Waals heterostructures (VDWHs), obtained via the controlled assembly o...
International audienceVan der Waals heterostructures (VDWHs), obtained via the controlled assembly o...
International audienceVan der Waals heterostructures (VDWHs), obtained via the controlled assembly o...
International audienceToday, most of electronic devices are based on heterostructures made by molecu...
We fabricated a van der Waals heterostructure by stacking together monolayers of MoS2 and ReSe2. Tra...
Two-dimensional (2D) material-based heterostructures provide a unique platform where interactions be...
We fabricated a van der Waals heterostructure by stacking together monolayers of MoS2 and ReSe2. Tra...
The extraordinary versatility and tunability of the optical and electrical properties of two-dimensi...
Two-dimensional (2D) materials have attracted extensive attention due to their unique and remarkable...
Electrical and optical characteristics of few-layered (3–4 L) chemical vapor deposition (CVD) grown ...
Electrical and optical characteristics of few-layered (3–4 L) chemical vapor deposition (CVD) grown ...
Two-dimensional (2D) layered materials are emerging candidates for future high-performance electroni...
Two-dimensional (2D) layered materials are emerging candidates for future high-performance electroni...
Despite numerous studies on two-dimensional van der Waals heterostructures, a full understanding of ...
The vertical stacking of van der Waals (vdW) materials introduces a new degree of freedom to the res...
International audienceVan der Waals heterostructures (VDWHs), obtained via the controlled assembly o...
International audienceVan der Waals heterostructures (VDWHs), obtained via the controlled assembly o...
International audienceVan der Waals heterostructures (VDWHs), obtained via the controlled assembly o...
International audienceToday, most of electronic devices are based on heterostructures made by molecu...
We fabricated a van der Waals heterostructure by stacking together monolayers of MoS2 and ReSe2. Tra...
Two-dimensional (2D) material-based heterostructures provide a unique platform where interactions be...
We fabricated a van der Waals heterostructure by stacking together monolayers of MoS2 and ReSe2. Tra...
The extraordinary versatility and tunability of the optical and electrical properties of two-dimensi...
Two-dimensional (2D) materials have attracted extensive attention due to their unique and remarkable...
Electrical and optical characteristics of few-layered (3–4 L) chemical vapor deposition (CVD) grown ...
Electrical and optical characteristics of few-layered (3–4 L) chemical vapor deposition (CVD) grown ...
Two-dimensional (2D) layered materials are emerging candidates for future high-performance electroni...
Two-dimensional (2D) layered materials are emerging candidates for future high-performance electroni...