The geometric and electronic properties of grain boundary (GB) in two-dimensional (2D) stanene have been investigated by first-principles calculations. Four typical GB structures with particularly low formation energies were found. These extended defects act as quasi-one-dimensional semiconductor or metallic wires depending on their geometric structures. Moreover, they are reactive and the adsorption of H atoms at the GB region is more stable than the stanene bulk region. A single H adsorption poses a drastic effect on the electronic behavior of GB defects, and the band structures can be tuned by the coverages of H adsorption at these GB defects in stanene. The present results indicate that GBs are important defects in stanene which may be ...
Stanene, a quasi-two-dimensional honeycomb-like structure of tin belonging to the family of 2D-Xenes...
Stanene, composed of tin atoms, is a member of 2D-Xenes, two-dimensional single element materials. T...
Guided by the principles of dislocation theory, we use the first-principles calculations to determin...
Structural and electronic properties of two-dimensional stanene and graphene heterostructure (Sn/G) ...
Graphene is regarded as a promising successor of silicon in many areas of electronics. A particularl...
This study investigates the structural and electronic properties of two-dimensional tin, known as s...
Artificial post-graphene elemental 2D materials have received much attention recently. Especially, s...
We have performed first-principles calculations based on density functional theory to investigate th...
First-principles calculations have been performed to investigate the geometric and electronic proper...
Germanene and stanene (also sometimes written stannene or called tinene) are 2D materials composed o...
Recently, two-dimensional buckled honeycomb stanene has been fabricated by molecular beam epitaxy gr...
Recently, two-dimensional buckled honeycomb stanene has been manufactured by molecular beam epitaxy ...
Two-dimensional (2D) elemental materials of group-IIIA, -IVA, -VA -VIA and IVB, beyond graphene, one...
In the current study, elastic properties of stanene, a hexagonal honeycomb allotrope of tin is inves...
Stanene is one of most important of 2D materials due to its potential to demonstrate room temperatur...
Stanene, a quasi-two-dimensional honeycomb-like structure of tin belonging to the family of 2D-Xenes...
Stanene, composed of tin atoms, is a member of 2D-Xenes, two-dimensional single element materials. T...
Guided by the principles of dislocation theory, we use the first-principles calculations to determin...
Structural and electronic properties of two-dimensional stanene and graphene heterostructure (Sn/G) ...
Graphene is regarded as a promising successor of silicon in many areas of electronics. A particularl...
This study investigates the structural and electronic properties of two-dimensional tin, known as s...
Artificial post-graphene elemental 2D materials have received much attention recently. Especially, s...
We have performed first-principles calculations based on density functional theory to investigate th...
First-principles calculations have been performed to investigate the geometric and electronic proper...
Germanene and stanene (also sometimes written stannene or called tinene) are 2D materials composed o...
Recently, two-dimensional buckled honeycomb stanene has been fabricated by molecular beam epitaxy gr...
Recently, two-dimensional buckled honeycomb stanene has been manufactured by molecular beam epitaxy ...
Two-dimensional (2D) elemental materials of group-IIIA, -IVA, -VA -VIA and IVB, beyond graphene, one...
In the current study, elastic properties of stanene, a hexagonal honeycomb allotrope of tin is inves...
Stanene is one of most important of 2D materials due to its potential to demonstrate room temperatur...
Stanene, a quasi-two-dimensional honeycomb-like structure of tin belonging to the family of 2D-Xenes...
Stanene, composed of tin atoms, is a member of 2D-Xenes, two-dimensional single element materials. T...
Guided by the principles of dislocation theory, we use the first-principles calculations to determin...