The electronic properties of 3d transition metal (TM)-decorated silicene were investigated by using density functional calculations in an attempt to replace graphene in electronic applications, owing to its better compatibility with Si-based technology. Among the ten types of TM-doped silicene (TM-silicene) studied, Ti-, Ni-, and Zn-doped silicene became semiconductors, whereas Co and Cu doping changed the substrate to a half-metallic material. Interestingly, in cases of Ti- and Cu-doped silicene, the measured band gaps turned out to be significantly larger than the previously reported band gap in silicene. The observed band-gap openings at the Fermi level were induced by breaking the sublattice symmetry caused by two structural changes, th...
Silicene, the ultimate scaling of a silicon atomic sheet in a buckled honeycomb lattice, represents ...
In the present work, the electronic properties of doped silicene located on graphite and nickel subs...
Silicene is emerging as a two-dimensional material with very attractive electronic properties for a ...
Following the success of graphene which possesses unique and superior properties, 2D material other ...
Following the success of graphene which possesses unique and superior properties, 2D material other ...
Silicene is a two-dimensional (2D) derivative of silicon (Si) arrangsd in honeycomb lattice. It is p...
This study applies density functional theory (DFT) on examination of silicene, which is graphene-lik...
Unlike graphene which requires redesigned fabrication technique, silicene is predicted to be compati...
Unlike graphene which requires redesigned fabrication technique, silicene is predicted to be compati...
Unlike graphene which requires redesigned fabrication technique, silicene is predicted to be compati...
We use first-principles density functional theory based calculations to determine the stability and ...
The effects of strain, charge doping, and external electric field on the electronic structure of a f...
We report first-principles results on the electronic structure of silicene. For planar and simply bu...
Silicene, a two-dimensional (2D) silicon counterpart of graphene with attractive electronic properti...
By using first-principles calculations, we predict that a sizable band gap can be opened at the Dira...
Silicene, the ultimate scaling of a silicon atomic sheet in a buckled honeycomb lattice, represents ...
In the present work, the electronic properties of doped silicene located on graphite and nickel subs...
Silicene is emerging as a two-dimensional material with very attractive electronic properties for a ...
Following the success of graphene which possesses unique and superior properties, 2D material other ...
Following the success of graphene which possesses unique and superior properties, 2D material other ...
Silicene is a two-dimensional (2D) derivative of silicon (Si) arrangsd in honeycomb lattice. It is p...
This study applies density functional theory (DFT) on examination of silicene, which is graphene-lik...
Unlike graphene which requires redesigned fabrication technique, silicene is predicted to be compati...
Unlike graphene which requires redesigned fabrication technique, silicene is predicted to be compati...
Unlike graphene which requires redesigned fabrication technique, silicene is predicted to be compati...
We use first-principles density functional theory based calculations to determine the stability and ...
The effects of strain, charge doping, and external electric field on the electronic structure of a f...
We report first-principles results on the electronic structure of silicene. For planar and simply bu...
Silicene, a two-dimensional (2D) silicon counterpart of graphene with attractive electronic properti...
By using first-principles calculations, we predict that a sizable band gap can be opened at the Dira...
Silicene, the ultimate scaling of a silicon atomic sheet in a buckled honeycomb lattice, represents ...
In the present work, the electronic properties of doped silicene located on graphite and nickel subs...
Silicene is emerging as a two-dimensional material with very attractive electronic properties for a ...