Vertical graphene heterostructures have been introduced as an alternative architecture for electronic devices by using quantum tunneling. Here, we present that the current on/off ratio of vertical graphene field-effect transistors is enhanced by using an armchair graphene nanoribbon as an electrode. Moreover, we report spin-dependent tunneling current of the graphene/MoS<sub>2</sub> heterostructures. When an atomically thin MoS<sub>2</sub> layer sandwiched between graphene electrodes becomes magnetic, Dirac fermions with different spins feel different heights of the tunnel barrier, leading to spin-dependent tunneling. Our finding will develop the present graphene heterostructures for electronic devices by improving the device performance an...
Proximity induced spin-orbit coupling effects in graphene on transition-metal dichalcogenides (TMD) ...
The development of spintronics devices relies on efficient generation of spin-polarized currents and...
Two-dimensional (2D) crystals offer a unique platform due to their remarkable and contrasting spintr...
Controlling tunneling properties through graphene vertical heterostructures provides advantages in a...
Graphene has been widely studied for its high in-plane charge carrier mobility and long spin diffusi...
Graphene-based vertical heterostructures, particularly stacks incorporated with other layered materi...
International audience2D materials offer the ability to expose their electronic structure to manipul...
International audience2D materials offer the ability to expose their electronic structure to manipul...
The celebrated electronic properties of graphene(1,2) have opened the way for materials just one ato...
High in-plane charge carrier mobility and long spin diffusion length makes graphene a unique materia...
Vertical integration of van der Waals (vdW) materials into heterostructures with atomic precision is...
Graphene nanoribbons (GNRs) have been proposed as potential building blocks for field effect transis...
A major challenge of spintronics is in generating, controlling and detecting spin-polarized current....
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 ...
Proximity induced spin-orbit coupling effects in graphene on transition-metal dichalcogenides (TMD) ...
The development of spintronics devices relies on efficient generation of spin-polarized currents and...
Two-dimensional (2D) crystals offer a unique platform due to their remarkable and contrasting spintr...
Controlling tunneling properties through graphene vertical heterostructures provides advantages in a...
Graphene has been widely studied for its high in-plane charge carrier mobility and long spin diffusi...
Graphene-based vertical heterostructures, particularly stacks incorporated with other layered materi...
International audience2D materials offer the ability to expose their electronic structure to manipul...
International audience2D materials offer the ability to expose their electronic structure to manipul...
The celebrated electronic properties of graphene(1,2) have opened the way for materials just one ato...
High in-plane charge carrier mobility and long spin diffusion length makes graphene a unique materia...
Vertical integration of van der Waals (vdW) materials into heterostructures with atomic precision is...
Graphene nanoribbons (GNRs) have been proposed as potential building blocks for field effect transis...
A major challenge of spintronics is in generating, controlling and detecting spin-polarized current....
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 ...
Proximity induced spin-orbit coupling effects in graphene on transition-metal dichalcogenides (TMD) ...
The development of spintronics devices relies on efficient generation of spin-polarized currents and...
Two-dimensional (2D) crystals offer a unique platform due to their remarkable and contrasting spintr...