Graphene-based vertical heterostructures, particularly stacks incorporated with other layered materials, are promising for nanoelectronics. The stacking of two model Dirac materials, graphene and topological insulator, can considerably enlarge the family of van der Wags heterostructures. Despite good understanding of the two individual materials, the electron transport properties of a combined vertical heterojunction are still unknown. Here, we show the experimental realization of a vertical heterojunction between Bi2Se3 nanoplate and monolayer graphene. At low temperatures, the electron transport through the vertical heterojunction is dominated by the tunneling process, which can be effectively tuned by gate voltage to alter the density of...
Tunneling transistors with negative differential resistance have widespread appeal for both digital ...
An obstacle to the use of graphene as an alternative to silicon electronics has been the absence of ...
Over 50 years, Moore’s law has successfully predicted the progress of the silicon electronics indust...
Vertical graphene heterostructures have been introduced as an alternative architecture for electroni...
In recent years, the twist angle between vertically stacked, two-dimensional van der Waals materials...
Graphene, a single atomic layer of carbon atoms, has been extensively studied in recent years. Its u...
<p>Two-dimensional materials and their heterostructures offer a new paradigm for studying physics, e...
It has been theoretically proposed that the spin textures of surface states in a topological insulat...
Since the discovery of the quantum Hall effect in 1980, it has attracted intense interest in condens...
Controlling tunneling properties through graphene vertical heterostructures provides advantages in a...
Novel two-dimensional materials with weak interlayer Van der Waals interaction are fantastic platfor...
Two Dirac fermion systems recently realized in solid state physics are believed promising for novel ...
Vertical integration of van der Waals (vdW) materials into heterostructures with atomic precision is...
Since their discovery, graphene and other 2D materials have become a subject of intense research in ...
This thesis describes low temperature transport experiments designed to study graphene itself and it...
Tunneling transistors with negative differential resistance have widespread appeal for both digital ...
An obstacle to the use of graphene as an alternative to silicon electronics has been the absence of ...
Over 50 years, Moore’s law has successfully predicted the progress of the silicon electronics indust...
Vertical graphene heterostructures have been introduced as an alternative architecture for electroni...
In recent years, the twist angle between vertically stacked, two-dimensional van der Waals materials...
Graphene, a single atomic layer of carbon atoms, has been extensively studied in recent years. Its u...
<p>Two-dimensional materials and their heterostructures offer a new paradigm for studying physics, e...
It has been theoretically proposed that the spin textures of surface states in a topological insulat...
Since the discovery of the quantum Hall effect in 1980, it has attracted intense interest in condens...
Controlling tunneling properties through graphene vertical heterostructures provides advantages in a...
Novel two-dimensional materials with weak interlayer Van der Waals interaction are fantastic platfor...
Two Dirac fermion systems recently realized in solid state physics are believed promising for novel ...
Vertical integration of van der Waals (vdW) materials into heterostructures with atomic precision is...
Since their discovery, graphene and other 2D materials have become a subject of intense research in ...
This thesis describes low temperature transport experiments designed to study graphene itself and it...
Tunneling transistors with negative differential resistance have widespread appeal for both digital ...
An obstacle to the use of graphene as an alternative to silicon electronics has been the absence of ...
Over 50 years, Moore’s law has successfully predicted the progress of the silicon electronics indust...