There have been a few studies of heterojunctions composed of two-dimensional transition-metal dichalcogenides (TMDs) and an oxide layer, but such studies of high-performance electric and optoelectronic devices are essential. Such heterojunctions with low-resistivity metal contacts are needed by the electronics industry to fabricate efficient diodes and photovoltaic devices. Here, a van der Waals heterojunction composed of p-type black phosphorus (p-BP) and n-type indium–gallium–zinc oxide (n-IGZO) films with low-resistivity metal contacts is reported, and it demonstrates high rectification. The low off-state leakage current in the thick IGZO film accounts for the high rectification ratio in a sharp interface of p-BP/n-IGZO devices. For elec...
Abstract Junctions between n-type semiconductors of different electron affinity show rectification i...
Two-dimensional materials are attractive choices for photovoltaic applications due to their unique m...
International audienceVan der Waals (vdW) heterostructures obtained by stacking 2D materials offer a...
Some advances have been achieved in developing heterojunctions consisting of indium-gallium-zinc oxi...
Heterostructures comprising two-dimensional (2D) semiconductors fabricated by individual stacking ex...
Phosphorene, a elemental 2D material, which is the monolayer of black phosphorus, has been mechanica...
The layered structure of InSe with weak Van-der-Waals interlayer bonds allows: i) to get substrates ...
Heterostructures assembled from atomically thin materials have led to a new paradigm in the developm...
The broken-gap (type III) van der Waals heterojunction is of particular interest, as there is no ove...
Recently, van der Waals heterojunction based on 2D materials emerges as a promising technology for o...
Two-dimensional materials are attractive for constructing high-performance photonic chip-integrated ...
Digital logic circuits are based on complementary pairs of n- and p-type field effect transistors (F...
Black phosphorus (BP)-based heterostructure with tunable band offset has been proven to be promising...
Owing to its high carrier mobility and thickness-tunable direct band gap, black phosphorous emerges ...
Layered transition-metal dichalcogenides hold promise for making ultrathin-film photovoltaic devices...
Abstract Junctions between n-type semiconductors of different electron affinity show rectification i...
Two-dimensional materials are attractive choices for photovoltaic applications due to their unique m...
International audienceVan der Waals (vdW) heterostructures obtained by stacking 2D materials offer a...
Some advances have been achieved in developing heterojunctions consisting of indium-gallium-zinc oxi...
Heterostructures comprising two-dimensional (2D) semiconductors fabricated by individual stacking ex...
Phosphorene, a elemental 2D material, which is the monolayer of black phosphorus, has been mechanica...
The layered structure of InSe with weak Van-der-Waals interlayer bonds allows: i) to get substrates ...
Heterostructures assembled from atomically thin materials have led to a new paradigm in the developm...
The broken-gap (type III) van der Waals heterojunction is of particular interest, as there is no ove...
Recently, van der Waals heterojunction based on 2D materials emerges as a promising technology for o...
Two-dimensional materials are attractive for constructing high-performance photonic chip-integrated ...
Digital logic circuits are based on complementary pairs of n- and p-type field effect transistors (F...
Black phosphorus (BP)-based heterostructure with tunable band offset has been proven to be promising...
Owing to its high carrier mobility and thickness-tunable direct band gap, black phosphorous emerges ...
Layered transition-metal dichalcogenides hold promise for making ultrathin-film photovoltaic devices...
Abstract Junctions between n-type semiconductors of different electron affinity show rectification i...
Two-dimensional materials are attractive choices for photovoltaic applications due to their unique m...
International audienceVan der Waals (vdW) heterostructures obtained by stacking 2D materials offer a...