International audienceIn the present study, a comparative prediction of atomic and electronic structure of black, blue, and green phosphorene/graphene heterostructures is presented using Density Functional Theory (DFT). The lowest total and interaction energies and highest charge transfer correspond to the blue phosphorene/graphene interface, followed by black and green phosphorene/graphene interfaces. This trend is the same for monolayer, AA-, and AB-stacked bilayer graphene. However, the charge transfer is more important to AB-stacked bilayer graphene at the interface with black and green phosphorene than to AA-stacked bilayer graphene. On another hand, for the charge transfer is more important from AA-stacked bilayer graphene to blue pho...
A computational study of the adsorption and diffusion behavior of alkali and alkaline earth metal at...
Electron transport in bilayer phosphorene is studied using the first-principles and nonequilibrium G...
This paper reviews the theoretical work undertaken using density functional theory (DFT) to explore ...
By using first–principles calculations, the effects of graphene and boron nitride (BN) substrates on...
By using first–principles calculations, the effects of graphene and boron nitride (BN) substrates on...
We present a comprehensive study of the structural and electronic properties of a graphene/ phosphor...
We performed density-functional theory calculations to study the electronic structures at the interf...
The effect of in-plane uniaxial strain on band structures and electronic properties of graphene/blue...
Phosphorene is an emerging 2D-like material with direct energy band. In this work we report the resu...
Nanomaterials have a high surface-to-mass ratio and their surface properties significantly affect th...
Phosphorene is a graphene-like material with an intermediate band gap, in contrast to zero-gap graph...
We report the results of density functional theory-based calculations on monolayer and bilayer green...
Charge transfer at the interface between dissimilar materials is at the heart of electronics and pho...
We report the results of density functional theory-based calculations on monolayer and bilayer green...
Heterostructures based on graphene were investigated by using density function theory (DFT). It is f...
A computational study of the adsorption and diffusion behavior of alkali and alkaline earth metal at...
Electron transport in bilayer phosphorene is studied using the first-principles and nonequilibrium G...
This paper reviews the theoretical work undertaken using density functional theory (DFT) to explore ...
By using first–principles calculations, the effects of graphene and boron nitride (BN) substrates on...
By using first–principles calculations, the effects of graphene and boron nitride (BN) substrates on...
We present a comprehensive study of the structural and electronic properties of a graphene/ phosphor...
We performed density-functional theory calculations to study the electronic structures at the interf...
The effect of in-plane uniaxial strain on band structures and electronic properties of graphene/blue...
Phosphorene is an emerging 2D-like material with direct energy band. In this work we report the resu...
Nanomaterials have a high surface-to-mass ratio and their surface properties significantly affect th...
Phosphorene is a graphene-like material with an intermediate band gap, in contrast to zero-gap graph...
We report the results of density functional theory-based calculations on monolayer and bilayer green...
Charge transfer at the interface between dissimilar materials is at the heart of electronics and pho...
We report the results of density functional theory-based calculations on monolayer and bilayer green...
Heterostructures based on graphene were investigated by using density function theory (DFT). It is f...
A computational study of the adsorption and diffusion behavior of alkali and alkaline earth metal at...
Electron transport in bilayer phosphorene is studied using the first-principles and nonequilibrium G...
This paper reviews the theoretical work undertaken using density functional theory (DFT) to explore ...