Owing to its high carrier mobility and thickness-tunable direct band gap, black phosphorus emerges as a promising component of optoelectronic devices. Here, we evaluate the device characteristics of p-n heterojunction diodes wherein thin black phosphorus layers are interfaced with an underlying, highly n-doped GaAs substrate. The p-n heterojunctions exhibit close-to-ideal diode behavior at low bias, while under illumination they display a photoresponse that is evenly distributed over the entire junction area, with an external quantum efficiency of up to 10% at zero bias. Moreover, the observed maximum open circuit voltage of 0.6 V is consistent with the band gap estimated for a black phosphorus sheet with a thickness on the order of 10 nm. ...
Black phosphorus (BP), a single elemental two-dimensional (2D) material with a sizable band gap, mee...
Black phosphorus has an orthorhombic layered structure with a layer-dependent direct band gap from m...
Layered heterojunctions are widely applied as fundamental building blocks for semiconductor devices....
Owing to its high carrier mobility and thickness-tunable direct band gap, black phosphorus emerges a...
Owing to its high carrier mobility and thickness-tunable direct band gap, black phosphorous emerges ...
Phosphorene, a elemental 2D material, which is the monolayer of black phosphorus, has been mechanica...
Few-layer black phosphorus, a new elemental two-dimensional (2D) material recently isolated by mecha...
The broken-gap (type III) van der Waals heterojunction is of particular interest, as there is no ove...
This study used a spatially controlled boron-doping technique that enables a p–n junction diode to b...
We report the fabrication, electrical, and optical characterizations of few-layered black phosphorus...
Heterostructures comprising two-dimensional (2D) semiconductors fabricated by individual stacking ex...
Black phosphorus (BP)-based heterostructure with tunable band offset has been proven to be promising...
Semiconductor heterostructures have enabled numerous applications in diodes, photodetectors, junctio...
Black phosphorene (BP), a newly discovered elemental two-dimensional material, is attractive for opt...
Two-dimensional materials are attractive for constructing high-performance photonic chip-integrated ...
Black phosphorus (BP), a single elemental two-dimensional (2D) material with a sizable band gap, mee...
Black phosphorus has an orthorhombic layered structure with a layer-dependent direct band gap from m...
Layered heterojunctions are widely applied as fundamental building blocks for semiconductor devices....
Owing to its high carrier mobility and thickness-tunable direct band gap, black phosphorus emerges a...
Owing to its high carrier mobility and thickness-tunable direct band gap, black phosphorous emerges ...
Phosphorene, a elemental 2D material, which is the monolayer of black phosphorus, has been mechanica...
Few-layer black phosphorus, a new elemental two-dimensional (2D) material recently isolated by mecha...
The broken-gap (type III) van der Waals heterojunction is of particular interest, as there is no ove...
This study used a spatially controlled boron-doping technique that enables a p–n junction diode to b...
We report the fabrication, electrical, and optical characterizations of few-layered black phosphorus...
Heterostructures comprising two-dimensional (2D) semiconductors fabricated by individual stacking ex...
Black phosphorus (BP)-based heterostructure with tunable band offset has been proven to be promising...
Semiconductor heterostructures have enabled numerous applications in diodes, photodetectors, junctio...
Black phosphorene (BP), a newly discovered elemental two-dimensional material, is attractive for opt...
Two-dimensional materials are attractive for constructing high-performance photonic chip-integrated ...
Black phosphorus (BP), a single elemental two-dimensional (2D) material with a sizable band gap, mee...
Black phosphorus has an orthorhombic layered structure with a layer-dependent direct band gap from m...
Layered heterojunctions are widely applied as fundamental building blocks for semiconductor devices....