Nanodevices based on monolayer black phosphorus or phosphorene are promising for future electron devices in high density integrated circuits. We investigate bandstructure and size-scaling effects in the electronic and transport properties of phosphorene nanoribbons (PNRs) and the performance of ultra-scaled PNR field-effect transistors (FETs) using advanced theoretical and computational approaches. Material and device properties are obtained by non-equilibrium Green’s function (NEGF) formalism combined with a novel tight-binding (TB) model fitted on ab initio density-functional theory (DFT) calculations. We report significant changes in the dispersion, number, and configuration of electronic subbands, density of states, and transmission of ...
Passivated phosphorene nanoribbons, armchair (a-PNR), diagonal (d-PNR), and zigzag (z-PNR), were inv...
Phosphorene is a mono-elemental, two-dimensional (2D) substance with outstanding, highly directional...
The discovery of graphene has inspired great research interest in two-dimensional (2D) layered nanom...
We have investigated the electronic structure and carrier mobility of monolayer black phosphorus nan...
Few-layer black phosphorus is a semiconductor material, where its allotrope is called phosphorene; a...
Few-layer black phosphorene has recently attracted significant interest in the scientific community....
Edge contacts are promising for improving carrier injection and contact resistance in devices based ...
In this work, first-principles calculations based on Density Functional Theory (DFT) were employed i...
By using first-principles calculations and the non-equilibrium Green's function, we theoretically st...
Recently, a new semiconducting 2D material, black phosphorus, has piqued the interest of research gr...
We perform a comprehensive first-principles study of the electronic properties of phosphorene nanori...
By using first-principles calculation based on density functional theory and non-equilibrium Green's...
Recently, a phosphorus isomer named green phosphorus was theoretically predicted with a similar inte...
Using the Tight Binding (TB) parameters extracted from Density Functional Theory (DFT) and Recursive...
In this work, device performances of tunneling field effect transistors (TFETs) based on phosphorene...
Passivated phosphorene nanoribbons, armchair (a-PNR), diagonal (d-PNR), and zigzag (z-PNR), were inv...
Phosphorene is a mono-elemental, two-dimensional (2D) substance with outstanding, highly directional...
The discovery of graphene has inspired great research interest in two-dimensional (2D) layered nanom...
We have investigated the electronic structure and carrier mobility of monolayer black phosphorus nan...
Few-layer black phosphorus is a semiconductor material, where its allotrope is called phosphorene; a...
Few-layer black phosphorene has recently attracted significant interest in the scientific community....
Edge contacts are promising for improving carrier injection and contact resistance in devices based ...
In this work, first-principles calculations based on Density Functional Theory (DFT) were employed i...
By using first-principles calculations and the non-equilibrium Green's function, we theoretically st...
Recently, a new semiconducting 2D material, black phosphorus, has piqued the interest of research gr...
We perform a comprehensive first-principles study of the electronic properties of phosphorene nanori...
By using first-principles calculation based on density functional theory and non-equilibrium Green's...
Recently, a phosphorus isomer named green phosphorus was theoretically predicted with a similar inte...
Using the Tight Binding (TB) parameters extracted from Density Functional Theory (DFT) and Recursive...
In this work, device performances of tunneling field effect transistors (TFETs) based on phosphorene...
Passivated phosphorene nanoribbons, armchair (a-PNR), diagonal (d-PNR), and zigzag (z-PNR), were inv...
Phosphorene is a mono-elemental, two-dimensional (2D) substance with outstanding, highly directional...
The discovery of graphene has inspired great research interest in two-dimensional (2D) layered nanom...