Phosphorene, a two-dimensional analog of black phosphorous, has been a subject of immense interest recently, due to its high carrier mobilities and a tunable bandgap. So far, tunability has been predicted to be obtained with very high compressive/tensile in-plane strains, and vertical electric field, which are difficult to achieve experimentally. Here, we show using density functional theory based calculations the possibility of tuning electronic properties by applying normal compressive strain in bilayer phosphorene. A complete and fully reversible semiconductor to metal transition has been observed at similar to 13.35% strain, which can be easily realized experimentally. Furthermore, a direct to indirect bandgap transition has also been o...
Using first-principles calculations based on density-functional theory we systematically investigate...
Recently, a phosphorus isomer named green phosphorus was theoretically predicted with a similar inte...
Two-dimension (2D) materials have attracted interests due to their potential applications in the nex...
Abstract We study the effects of the uniaxial tensile strain and shear deformation as well as their ...
A new promising semiconductor material (phosphorene) is studied using theoretical simulation. The po...
Controlling the bandgap through local-strain engineering is an exciting avenue for tailoring optoele...
By means of hybrid DFT calculations and the deformation potential approximation, we show that bilaye...
Using first-principles calculations based on density-functional theory we systematically investigate...
We investigate the electronic structure and chemical activity of rippled phosphorene induced by larg...
We perform a comprehensive first-principles study of the electronic properties of phosphorene nanori...
Single-layer black phosphorus or phosphorene is a two-dimensional material made from a puckered hone...
Newly fabricated few-layer black phosphorus and its monolayer structure, phosphorene, are expected t...
Two-dimensional materials have great potential for applications as high-performance electronic devic...
© 2016 IOP Publishing Ltd. Phosphorene has been rediscovered recently, establishing itself as one of...
The effect of in-plane uniaxial strain on band structures and electronic properties of graphene/blue...
Using first-principles calculations based on density-functional theory we systematically investigate...
Recently, a phosphorus isomer named green phosphorus was theoretically predicted with a similar inte...
Two-dimension (2D) materials have attracted interests due to their potential applications in the nex...
Abstract We study the effects of the uniaxial tensile strain and shear deformation as well as their ...
A new promising semiconductor material (phosphorene) is studied using theoretical simulation. The po...
Controlling the bandgap through local-strain engineering is an exciting avenue for tailoring optoele...
By means of hybrid DFT calculations and the deformation potential approximation, we show that bilaye...
Using first-principles calculations based on density-functional theory we systematically investigate...
We investigate the electronic structure and chemical activity of rippled phosphorene induced by larg...
We perform a comprehensive first-principles study of the electronic properties of phosphorene nanori...
Single-layer black phosphorus or phosphorene is a two-dimensional material made from a puckered hone...
Newly fabricated few-layer black phosphorus and its monolayer structure, phosphorene, are expected t...
Two-dimensional materials have great potential for applications as high-performance electronic devic...
© 2016 IOP Publishing Ltd. Phosphorene has been rediscovered recently, establishing itself as one of...
The effect of in-plane uniaxial strain on band structures and electronic properties of graphene/blue...
Using first-principles calculations based on density-functional theory we systematically investigate...
Recently, a phosphorus isomer named green phosphorus was theoretically predicted with a similar inte...
Two-dimension (2D) materials have attracted interests due to their potential applications in the nex...