Few-layer and thin film forms of layered black phosphorus (BP) have recently emerged as a promising material for applications in high performance nanoelectronics and infrared optoelectronics. Layered BP thin films offer a moderate bandgap of around 0.3 eV and high carrier mobility, which lead to transistors with decent on–off ratios and high on-state current densities. Here, we demonstrate the gigahertz frequency operation of BP field-effect transistors for the first time. The BP transistors demonstrated here show respectable current saturation with an on–off ratio that exceeds 2 × 10<sup>3</sup>. We achieved a current density in excess of 270 mA/mm and DC transconductance above 180 mS/mm for hole conduction. Using standard high frequency c...
Few-layer black phosphorus is a monatomic two-dimensional crystal with a direct band gap that has hi...
We report the preparation of thickness-controlled few-layer black phosphorus (BP) films through the ...
Black phosphorus (BP) has shown great potential as a semiconductor material beyond graphene and MoS2...
A high saturation velocity semiconductor is appealing for applications in electronics and optoelectr...
This paper reports high-performance top-gated black phosphorus (BP) field-effect transistors with ch...
Amorphous black phosphorus (a-BP) ultrathin films are deposited by pulsed laser deposition. a-BP fie...
Few-layer black phosphorus, a new elemental two-dimensional (2D) material recently isolated by mecha...
The discovery of graphene has inspired great research interest in two-dimensional (2D) layered nanom...
The energy bandgap is an intrinsic character of semiconductors, which largely determines their prope...
Band-to-band tunneling field-effect transistors (TFETs) have emerged as promising candidates for low...
The energy bandgap is an intrinsic character of semiconductors, which largely determines their prope...
Recent years have witnessed the rapidly growing interests in the rediscovered black phosphorus (BP),...
Black phosphorus (BP) is a promising two-dimensional (2D) material for nanoscale transistors, due to...
Black phosphorus (BP) is an emerging two-dimensional (2D) material with a natural bandgap, which has...
We report the fabrication, electrical, and optical characterizations of few-layered black phosphorus...
Few-layer black phosphorus is a monatomic two-dimensional crystal with a direct band gap that has hi...
We report the preparation of thickness-controlled few-layer black phosphorus (BP) films through the ...
Black phosphorus (BP) has shown great potential as a semiconductor material beyond graphene and MoS2...
A high saturation velocity semiconductor is appealing for applications in electronics and optoelectr...
This paper reports high-performance top-gated black phosphorus (BP) field-effect transistors with ch...
Amorphous black phosphorus (a-BP) ultrathin films are deposited by pulsed laser deposition. a-BP fie...
Few-layer black phosphorus, a new elemental two-dimensional (2D) material recently isolated by mecha...
The discovery of graphene has inspired great research interest in two-dimensional (2D) layered nanom...
The energy bandgap is an intrinsic character of semiconductors, which largely determines their prope...
Band-to-band tunneling field-effect transistors (TFETs) have emerged as promising candidates for low...
The energy bandgap is an intrinsic character of semiconductors, which largely determines their prope...
Recent years have witnessed the rapidly growing interests in the rediscovered black phosphorus (BP),...
Black phosphorus (BP) is a promising two-dimensional (2D) material for nanoscale transistors, due to...
Black phosphorus (BP) is an emerging two-dimensional (2D) material with a natural bandgap, which has...
We report the fabrication, electrical, and optical characterizations of few-layered black phosphorus...
Few-layer black phosphorus is a monatomic two-dimensional crystal with a direct band gap that has hi...
We report the preparation of thickness-controlled few-layer black phosphorus (BP) films through the ...
Black phosphorus (BP) has shown great potential as a semiconductor material beyond graphene and MoS2...