Using first-principles calculations based on density-functional theory we systematically investigate the effect of applied strain on the stability and on the electronic and magnetic properties of monolayer phosphorene with single-atom vacancy. We consider two types of single vacancies: the symmetric SV-55/66, which has a metallic and non-magnetic ground state, and the asymmetric SV-, which is energetically more favorable and exhibits a semiconducting and magnetic character. Our results show that compressive strain up to 10%, both biaxial and uniaxial along the zigzag direction, reduces the formation energy of both single-atom vacancies with respect to the pristine configuration and can stabilize these defects in phosphorene. We found that t...
Abstract We study the effects of the uniaxial tensile strain and shear deformation as well as their ...
We perform a comprehensive first-principles study of the electronic properties of phosphorene nanori...
© 2016 IOP Publishing Ltd. Phosphorene has been rediscovered recently, establishing itself as one of...
Using first-principles calculations based on density-functional theory we systematically investigate...
First-principles calculations based on the density functional theory were carried out to investigate...
A new promising semiconductor material (phosphorene) is studied using theoretical simulation. The po...
Using detailed first-principles calculations, we investigate the hopping rate of vacancies in phosph...
Using detailed first-principles calculations, we investigate the hopping rate of vacancies in phosph...
Phosphorene, a two-dimensional analog of black phosphorous, has been a subject of immense interest r...
We report a density functional theory (DFT) study regarding the effects of atomic defects, such as v...
We present a density functional theory study of 3d transition-metal (TM) atoms (Sc–Zn) adsorbed on a...
We investigate the spontaneous emission lifetime of a quantum emitter near a substrate coated with p...
<div> Using first-principles calculations, we investigate the mechanical and </div> <div> &nb...
© 2015 AIP Publishing LLC. Phosphorene is emerging as a promising 2D semiconducting material with a ...
Phosphorene, a well-studied 2D allotrope of phosphorus, features unique properties such as widely tu...
Abstract We study the effects of the uniaxial tensile strain and shear deformation as well as their ...
We perform a comprehensive first-principles study of the electronic properties of phosphorene nanori...
© 2016 IOP Publishing Ltd. Phosphorene has been rediscovered recently, establishing itself as one of...
Using first-principles calculations based on density-functional theory we systematically investigate...
First-principles calculations based on the density functional theory were carried out to investigate...
A new promising semiconductor material (phosphorene) is studied using theoretical simulation. The po...
Using detailed first-principles calculations, we investigate the hopping rate of vacancies in phosph...
Using detailed first-principles calculations, we investigate the hopping rate of vacancies in phosph...
Phosphorene, a two-dimensional analog of black phosphorous, has been a subject of immense interest r...
We report a density functional theory (DFT) study regarding the effects of atomic defects, such as v...
We present a density functional theory study of 3d transition-metal (TM) atoms (Sc–Zn) adsorbed on a...
We investigate the spontaneous emission lifetime of a quantum emitter near a substrate coated with p...
<div> Using first-principles calculations, we investigate the mechanical and </div> <div> &nb...
© 2015 AIP Publishing LLC. Phosphorene is emerging as a promising 2D semiconducting material with a ...
Phosphorene, a well-studied 2D allotrope of phosphorus, features unique properties such as widely tu...
Abstract We study the effects of the uniaxial tensile strain and shear deformation as well as their ...
We perform a comprehensive first-principles study of the electronic properties of phosphorene nanori...
© 2016 IOP Publishing Ltd. Phosphorene has been rediscovered recently, establishing itself as one of...