AbstractDefects are inevitably present in materials, and their existence strongly affects the fundamental physical properties of 2D materials. Here, we performed first-principles calculations to study the structural and electronic properties of antimonene with Stone–Wales defects, highlighting the differences in the structure and electronic properties. Our calculations show that the presence of a SW defect in antimonene changes the geometrical symmetry. And the band gap decreases in electronic band structure with the decrease of the SW defect concentration. The formation energy and cohesive energy of a SW defect in antimonene are studied, showing the possibility of its existence and its good stability, respectively. The difference charge de...
Antimonene has attracted much attention for its high carrier mobility and suitable band gap for ele...
Recent theoretical research has demonstrated that a new two-dimensional material, the monolayer of g...
A theory of the Stone-Wales (SW) defect as dipole of dislocation and anti-dislocation is presented i...
AbstractDefects are inevitably present in materials, and their existence strongly affects the fundam...
Two-dimensional (2D) elemental materials of group-IIIA, -IVA, -VA -VIA and IVB, beyond graphene, one...
Recent success in the experimental isolation and synthesis of highly stable atomically thin antimone...
Density functional theory and quantum Monte Carlo simulations reveal that the structure of the Stone...
Density functional theory and quantum Monte Carlo simulations reveal that the structure of the Stone...
Density functional theory and quantum Monte Carlo simulations reveal that the structure of the Stone...
A recent study predicted that a 2D single layer of antimony in buckled honeycomb as well as asymmetr...
Group V elemental monolayers including phosphorene are emerging as promising 2D materials with semic...
© 2015 American Chemical Society. Group V elemental monolayers including phosphorene are emerging as...
Stone-Wales (SW) defects in materials having hexagonal lattice are the most common topological defec...
By using first-principle calculations based on density functional theory, the geometries and electro...
Using first-principles calculations, we study the structural, energetic, and electronic properties o...
Antimonene has attracted much attention for its high carrier mobility and suitable band gap for ele...
Recent theoretical research has demonstrated that a new two-dimensional material, the monolayer of g...
A theory of the Stone-Wales (SW) defect as dipole of dislocation and anti-dislocation is presented i...
AbstractDefects are inevitably present in materials, and their existence strongly affects the fundam...
Two-dimensional (2D) elemental materials of group-IIIA, -IVA, -VA -VIA and IVB, beyond graphene, one...
Recent success in the experimental isolation and synthesis of highly stable atomically thin antimone...
Density functional theory and quantum Monte Carlo simulations reveal that the structure of the Stone...
Density functional theory and quantum Monte Carlo simulations reveal that the structure of the Stone...
Density functional theory and quantum Monte Carlo simulations reveal that the structure of the Stone...
A recent study predicted that a 2D single layer of antimony in buckled honeycomb as well as asymmetr...
Group V elemental monolayers including phosphorene are emerging as promising 2D materials with semic...
© 2015 American Chemical Society. Group V elemental monolayers including phosphorene are emerging as...
Stone-Wales (SW) defects in materials having hexagonal lattice are the most common topological defec...
By using first-principle calculations based on density functional theory, the geometries and electro...
Using first-principles calculations, we study the structural, energetic, and electronic properties o...
Antimonene has attracted much attention for its high carrier mobility and suitable band gap for ele...
Recent theoretical research has demonstrated that a new two-dimensional material, the monolayer of g...
A theory of the Stone-Wales (SW) defect as dipole of dislocation and anti-dislocation is presented i...