This study used a spatially controlled boron-doping technique that enables a p–n junction diode to be realized within a single 2D black phosphorus (BP) nanosheet for high-performance photovoltaic application. The reliability of the BP surface and state-of-the-art 2D p–n heterostructure’s gated junctions was obtained using the controllable pulsed-plasma process technique. Chemical and structural analyses of the boron-doped BP were performed using X-ray photoelectron spectroscopy, transmission electron microscopy, and first-principles density functional theory (DFT) calculations, and the electrical characteristics of a field-effect transistor based on the p–n heterostructure were determined. The incorporated boron generated high electron dens...
International audienceBoron phosphide layers were fabricated using plasma enhanced chemical vapor de...
The discovery of graphene has inspired great research interest in two-dimensional (2D) layered nanom...
Owing to its high carrier mobility and thickness-tunable direct band gap, black phosphorus emerges a...
Phosphorene, a elemental 2D material, which is the monolayer of black phosphorus, has been mechanica...
Two-dimensional (2D) materials have attracted growing interest due to their potential use in the nex...
Heterostructures comprising two-dimensional (2D) semiconductors fabricated by individual stacking ex...
Black phosphorus (BP), a single elemental two-dimensional (2D) material with a sizable band gap, mee...
We report the fabrication, electrical, and optical characterizations of few-layered black phosphorus...
Two-dimensional (2D) materials have attracted growing interest due to their potential use in the nex...
Black phosphorene (BP), a newly discovered elemental two-dimensional material, is attractive for opt...
Black phosphorus (BP) is an emerging two-dimensional (2D) material with a natural bandgap, which has...
Owing to its high carrier mobility and thickness-tunable direct band gap, black phosphorus emerges a...
Few-layer black phosphorus (BP) has recently emerged as a promising two-dimensional (2D) material fo...
Few-layer black phosphorus is a monatomic two-dimensional crystal with a direct band gap that has hi...
Owing to its high charge-carrier mobility, tunable direct-bandgap and unique in-plane anisotropic st...
International audienceBoron phosphide layers were fabricated using plasma enhanced chemical vapor de...
The discovery of graphene has inspired great research interest in two-dimensional (2D) layered nanom...
Owing to its high carrier mobility and thickness-tunable direct band gap, black phosphorus emerges a...
Phosphorene, a elemental 2D material, which is the monolayer of black phosphorus, has been mechanica...
Two-dimensional (2D) materials have attracted growing interest due to their potential use in the nex...
Heterostructures comprising two-dimensional (2D) semiconductors fabricated by individual stacking ex...
Black phosphorus (BP), a single elemental two-dimensional (2D) material with a sizable band gap, mee...
We report the fabrication, electrical, and optical characterizations of few-layered black phosphorus...
Two-dimensional (2D) materials have attracted growing interest due to their potential use in the nex...
Black phosphorene (BP), a newly discovered elemental two-dimensional material, is attractive for opt...
Black phosphorus (BP) is an emerging two-dimensional (2D) material with a natural bandgap, which has...
Owing to its high carrier mobility and thickness-tunable direct band gap, black phosphorus emerges a...
Few-layer black phosphorus (BP) has recently emerged as a promising two-dimensional (2D) material fo...
Few-layer black phosphorus is a monatomic two-dimensional crystal with a direct band gap that has hi...
Owing to its high charge-carrier mobility, tunable direct-bandgap and unique in-plane anisotropic st...
International audienceBoron phosphide layers were fabricated using plasma enhanced chemical vapor de...
The discovery of graphene has inspired great research interest in two-dimensional (2D) layered nanom...
Owing to its high carrier mobility and thickness-tunable direct band gap, black phosphorus emerges a...