Due to low formation energies, it is very easy to create atomic defects in phosphorene during its fabrication process. How these atomic defects affect its mechanical behavior, however, remain unknown. Here, we report on a systematic study of the effect of atomic vacancies on the mechanical properties and failure behavior of phosphorene using molecular dynamics simulations. It is found that atomic vacancies induce local stress concentration and cause early bond-breaking, leading to a significant degradation of the mechanical properties of the material. More specifically, a 2% concentration of randomly distributed mono-vacancies is able to reduce the fracture strength by ~40%. An increase in temperature from 10 to 400 K can further deteriorat...
In order to understand the relation of strain and material properties, both a microscopic model conn...
In order to understand the relation of strain and material properties, both a microscopic model conn...
In order to understand the relation of strain and material properties, both a microscopic model conn...
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...
Using first-principles calculations based on density-functional theory we systematically investigate...
Molecular dynamics simulations on the indentation process of freestanding and Pt(111)-supported blac...
A new promising semiconductor material (phosphorene) is studied using theoretical simulation. The po...
Molecular dynamics simulations on the indentation process of freestanding and Pt(111)-supported blac...
The newly discovered two-dimensional phosphorene suffers low stretchability which limits its applica...
Phosphorene, a single sheet of black phosphorus, is an elemental two-dimensional material with uniqu...
Phosphorene, a single sheet of black phosphorus, is an elemental two-dimensional material with uniqu...
First-principles calculations are performed to determine the structures of grain boundary (GB) in 2D...
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...
In order to understand the relation of strain and material properties, both a microscopic model conn...
In order to understand the relation of strain and material properties, both a microscopic model conn...
In order to understand the relation of strain and material properties, both a microscopic model conn...
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...
Using first-principles calculations based on density-functional theory we systematically investigate...
Molecular dynamics simulations on the indentation process of freestanding and Pt(111)-supported blac...
A new promising semiconductor material (phosphorene) is studied using theoretical simulation. The po...
Molecular dynamics simulations on the indentation process of freestanding and Pt(111)-supported blac...
The newly discovered two-dimensional phosphorene suffers low stretchability which limits its applica...
Phosphorene, a single sheet of black phosphorus, is an elemental two-dimensional material with uniqu...
Phosphorene, a single sheet of black phosphorus, is an elemental two-dimensional material with uniqu...
First-principles calculations are performed to determine the structures of grain boundary (GB) in 2D...
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...
In order to understand the relation of strain and material properties, both a microscopic model conn...
In order to understand the relation of strain and material properties, both a microscopic model conn...
In order to understand the relation of strain and material properties, both a microscopic model conn...