Using detailed first-principles calculations, we investigate the hopping rate of vacancies in phosphorene, an emerging elemental 2D material besides graphene. Our work predicts that a direct observation of these monovacancies (MVs), showing a highly mobile and anisotropic motion, is possible only at low temperatures around 70 K or below where the thermal activity is greatly suppressed. At room temperature, the motion of a MV is 16 orders faster than that in graphene, because of the low diffusion barrier of 0.3 eV. Built-in strain associated with the vacancies extends far along the zigzag direction while attenuating rapidly along the armchair direction. We reveal new features of the motion of divacancies (DVs) in phosphorene via multiple dis...
Two-dimensional semiconductor phosphorene has attracted extensive research interests for potential a...
A new promising semiconductor material (phosphorene) is studied using theoretical simulation. The po...
<div> Using first-principles calculations, we investigate the mechanical and </div> <div> &nb...
Using detailed first-principles calculations, we investigate the hopping rate of vacancies in phosph...
Using first-principles calculations based on density-functional theory we systematically investigate...
Due to low formation energies, it is very easy to create atomic defects in phosphorene during its fa...
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...
Two-dimensional materials tend to become crumpled according to the Mermin-Wagner theorem, and the re...
© 2016 IOP Publishing Ltd. Phosphorene has been rediscovered recently, establishing itself as one of...
Two-dimensional materials tend to become crumpled according to the Mermin-Wagner theorem, and the re...
The monolayer of black phosphorus, or “phosphorene,” has recently emerged as a two-dimensional semic...
Two-dimensional materials tend to become crumpled according to the Mermin-Wagner theorem, and the re...
First-principles calculations based on the density functional theory were carried out to investigate...
Vacancy influence on phosphorene electronic properties was investigated using Density Functional The...
Two-dimensional semiconductor phosphorene has attracted extensive research interests for potential a...
A new promising semiconductor material (phosphorene) is studied using theoretical simulation. The po...
<div> Using first-principles calculations, we investigate the mechanical and </div> <div> &nb...
Using detailed first-principles calculations, we investigate the hopping rate of vacancies in phosph...
Using first-principles calculations based on density-functional theory we systematically investigate...
Due to low formation energies, it is very easy to create atomic defects in phosphorene during its fa...
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...
Two-dimensional materials tend to become crumpled according to the Mermin-Wagner theorem, and the re...
© 2016 IOP Publishing Ltd. Phosphorene has been rediscovered recently, establishing itself as one of...
Two-dimensional materials tend to become crumpled according to the Mermin-Wagner theorem, and the re...
The monolayer of black phosphorus, or “phosphorene,” has recently emerged as a two-dimensional semic...
Two-dimensional materials tend to become crumpled according to the Mermin-Wagner theorem, and the re...
First-principles calculations based on the density functional theory were carried out to investigate...
Vacancy influence on phosphorene electronic properties was investigated using Density Functional The...
Two-dimensional semiconductor phosphorene has attracted extensive research interests for potential a...
A new promising semiconductor material (phosphorene) is studied using theoretical simulation. The po...
<div> Using first-principles calculations, we investigate the mechanical and </div> <div> &nb...