Abstract We study the effects of the uniaxial tensile strain and shear deformation as well as their combinations on the electronic properties of single-layer black phosphorene. The evolutions of the strain-dependent band gap are obtained using the numerical calculations within the tight-binding (TB) model as well as the first-principles (DFT) simulations and compared with previous findings. The TB-model-based findings show that the band gap of the strain-free phosphorene agrees with the experimental value and linearly depends on both stretching and shearing: increases (decreases) as the stretching increases (decreases), whereas gradually decreases with increasing the shear. A linear dependence is less or more similar as compared to that obt...
We investigate the effect of tensile and compressive strain in Phosphorene FET. Different percentage...
Using first-principles calculations based on density-functional theory we systematically investigate...
Two-dimension (2D) materials have attracted interests due to their potential applications in the nex...
Phosphorene, a two-dimensional analog of black phosphorous, has been a subject of immense interest r...
A new promising semiconductor material (phosphorene) is studied using theoretical simulation. The po...
Single-layer black phosphorus or phosphorene is a two-dimensional material made from a puckered hone...
<div> Using first-principles calculations, we investigate the mechanical and </div> <div> &nb...
The effect of in-plane uniaxial strain on band structures and electronic properties of graphene/blue...
Newly fabricated few-layer black phosphorus and its monolayer structure, phosphorene, are expected t...
We investigate the electronic structure and chemical activity of rippled phosphorene induced by larg...
Two-dimensional materials have great potential for applications as high-performance electronic devic...
Two-dimensional materials tend to become crumpled according to the Mermin-Wagner theorem, and the re...
Two-dimensional materials tend to become crumpled according to the Mermin-Wagner theorem, and the re...
Two-dimensional materials tend to become crumpled according to the Mermin-Wagner theorem, and the re...
We investigate the effect of tensile and compressive strain in Phosphorene FET. Different percentage...
We investigate the effect of tensile and compressive strain in Phosphorene FET. Different percentage...
Using first-principles calculations based on density-functional theory we systematically investigate...
Two-dimension (2D) materials have attracted interests due to their potential applications in the nex...
Phosphorene, a two-dimensional analog of black phosphorous, has been a subject of immense interest r...
A new promising semiconductor material (phosphorene) is studied using theoretical simulation. The po...
Single-layer black phosphorus or phosphorene is a two-dimensional material made from a puckered hone...
<div> Using first-principles calculations, we investigate the mechanical and </div> <div> &nb...
The effect of in-plane uniaxial strain on band structures and electronic properties of graphene/blue...
Newly fabricated few-layer black phosphorus and its monolayer structure, phosphorene, are expected t...
We investigate the electronic structure and chemical activity of rippled phosphorene induced by larg...
Two-dimensional materials have great potential for applications as high-performance electronic devic...
Two-dimensional materials tend to become crumpled according to the Mermin-Wagner theorem, and the re...
Two-dimensional materials tend to become crumpled according to the Mermin-Wagner theorem, and the re...
Two-dimensional materials tend to become crumpled according to the Mermin-Wagner theorem, and the re...
We investigate the effect of tensile and compressive strain in Phosphorene FET. Different percentage...
We investigate the effect of tensile and compressive strain in Phosphorene FET. Different percentage...
Using first-principles calculations based on density-functional theory we systematically investigate...
Two-dimension (2D) materials have attracted interests due to their potential applications in the nex...