Silicon is arguably the best electronic material, but it is not a good optoelectronic material. By employing first-principles calculations and the cluster-expansion approach, we discover that hydrogenated bilayer silicene (BS) shows promising potential as a new kind of optoelectronic material. Most significantly, hydrogenation converts the intrinsic BS, a strongly indirect semiconductor, into a direct-gap semiconductor with a widely tunable band gap. At low hydrogen concentrations, four ground states of single- and double-sided hydrogenated BS are characterized by dipole-allowed direct (or quasidirect) band gaps in the desirable range from 1 to 1.5 eV, suitable for solar applications. At high hydrogen concentrations, three well-ordered doub...
Si-nanosheets (Si-NSs) have recently attracted considerable attention due to their potential as next...
Inspired by the success of graphene, various two dimensional (2D) structures on different substrates...
Opening a sizable band gap without degrading its high carrier mobility is as vital for silicene as f...
pre-printSilicon is arguably the best electronic material, but it is not a good optoelectronic mater...
A method based on the particle swarm optimization algorithm is presented to design quasi-two-dimensi...
Silicene, a two-dimensional (2D) silicon nanosheet, has gained immense interest due to potential app...
Silicene, a two-dimensional (2D) silicon nanosheet, has gained immense interest due to potential app...
The effects of strain, charge doping, and external electric field on the electronic structure of a f...
Silicene is a zero band gap semiconductor. However, it is essential to open its bandgap for the appl...
Semiconductors simultaneously possessing high carrier mobility, moderate bandgap, and ambient enviro...
This study applies density functional theory (DFT) on examination of silicene, which is graphene-lik...
Very recently, zigzag and armchair dumbbell silicene (zd-Si and ad-Si) nanosheets have been identifi...
Developing nonlinear optical nanodevices compatible for the current silicon chip industry is of grea...
The stability, electronic, and optical properties of two dimensional hydrogenated few atomic layer s...
Hydrogenation of free-standing silicene, the two-dimensional allotrope of silicon, is investigated i...
Si-nanosheets (Si-NSs) have recently attracted considerable attention due to their potential as next...
Inspired by the success of graphene, various two dimensional (2D) structures on different substrates...
Opening a sizable band gap without degrading its high carrier mobility is as vital for silicene as f...
pre-printSilicon is arguably the best electronic material, but it is not a good optoelectronic mater...
A method based on the particle swarm optimization algorithm is presented to design quasi-two-dimensi...
Silicene, a two-dimensional (2D) silicon nanosheet, has gained immense interest due to potential app...
Silicene, a two-dimensional (2D) silicon nanosheet, has gained immense interest due to potential app...
The effects of strain, charge doping, and external electric field on the electronic structure of a f...
Silicene is a zero band gap semiconductor. However, it is essential to open its bandgap for the appl...
Semiconductors simultaneously possessing high carrier mobility, moderate bandgap, and ambient enviro...
This study applies density functional theory (DFT) on examination of silicene, which is graphene-lik...
Very recently, zigzag and armchair dumbbell silicene (zd-Si and ad-Si) nanosheets have been identifi...
Developing nonlinear optical nanodevices compatible for the current silicon chip industry is of grea...
The stability, electronic, and optical properties of two dimensional hydrogenated few atomic layer s...
Hydrogenation of free-standing silicene, the two-dimensional allotrope of silicon, is investigated i...
Si-nanosheets (Si-NSs) have recently attracted considerable attention due to their potential as next...
Inspired by the success of graphene, various two dimensional (2D) structures on different substrates...
Opening a sizable band gap without degrading its high carrier mobility is as vital for silicene as f...