We report first-principles results on the electronic structure of silicene. For planar and simply buckled silicenes, we confirm their zero-gap nature and show a significant renormalization of their Fermi velocity by including many-electron effects. However, the other two recently proposed silicene structures exhibit a finite bandgap, indicating that they are gapped semiconductors instead of expected Dirac-fermion semimetals. This finite bandgap is preserved with the Ag substrate included. Moreover, our GW calculation reveals enhanced many-electron effects in these two-dimensional structures. Finally, the bandgap of the latter two structures can be tuned in a wide range by applying strain. (C) 2013 AIP Publishing LLC. [http://dx.doi.org/10.1...
By performing ab-initio total energy calculations we study the structural and electronic properties ...
The interfaces between silicene and substrate materials play important roles in the electronic prope...
By performing ab-initio total energy calculations we study the structural and electronic properties ...
We report calculations of the electronic structure of silicene and the stability of its weakly buckl...
By using first-principles calculations, we systematically investigated several observed phases of si...
Opening a sizable band gap without degrading its high carrier mobility is as vital for silicene as f...
The electronic properties of 3d transition metal (TM)-decorated silicene were investigated by using ...
We theoretically investigate the structural, electronic, and transport properties of bilayer silicen...
This study applies density functional theory (DFT) on examination of silicene, which is graphene-lik...
A combination of density functional theory and a tight-binding model offers a robust means to descri...
Silicene, as the silicon analog of graphene, is successfully fabricated by epitaxially growing it on...
By using first-principles calculations, we predict that a sizable band gap can be opened at the Dira...
By using ab initio calculations, we predict that a vertical electric field is able to open a band ga...
Silicene, the ultimate scaling of a silicon atomic sheet in a buckled honeycomb lattice, represents ...
We report here the structural and electronic properties of graphene and silicene (the silicon analog...
By performing ab-initio total energy calculations we study the structural and electronic properties ...
The interfaces between silicene and substrate materials play important roles in the electronic prope...
By performing ab-initio total energy calculations we study the structural and electronic properties ...
We report calculations of the electronic structure of silicene and the stability of its weakly buckl...
By using first-principles calculations, we systematically investigated several observed phases of si...
Opening a sizable band gap without degrading its high carrier mobility is as vital for silicene as f...
The electronic properties of 3d transition metal (TM)-decorated silicene were investigated by using ...
We theoretically investigate the structural, electronic, and transport properties of bilayer silicen...
This study applies density functional theory (DFT) on examination of silicene, which is graphene-lik...
A combination of density functional theory and a tight-binding model offers a robust means to descri...
Silicene, as the silicon analog of graphene, is successfully fabricated by epitaxially growing it on...
By using first-principles calculations, we predict that a sizable band gap can be opened at the Dira...
By using ab initio calculations, we predict that a vertical electric field is able to open a band ga...
Silicene, the ultimate scaling of a silicon atomic sheet in a buckled honeycomb lattice, represents ...
We report here the structural and electronic properties of graphene and silicene (the silicon analog...
By performing ab-initio total energy calculations we study the structural and electronic properties ...
The interfaces between silicene and substrate materials play important roles in the electronic prope...
By performing ab-initio total energy calculations we study the structural and electronic properties ...