On the basis of the density functional theory (DFT) within local density approximations (LDA) approach, we calculate the band gaps for different size SnO2 quantum wire (QWs) and quantum dots (QDs). A model is proposed to passivate the surface atoms of SnO2 QWs and QDs. We find that the band gap increases between QWs and bulk evolve as Delta E-g(wire) = 1.74/d(1.20) as the effective diameter d decreases, while being Delta E-g(dot) = 2.84/d(1.26) for the QDs. Though the similar to d(1.2) scale is significantly different from similar to d(2) of the effective mass result, the ratio of band gap increases between SnO2 QWs and QDs is 0.609, very close to the effective mass prediction. We also confirm, although the LDS calculations underestimate th...
We demonstrate a clear correlation between the quantum confinement effect and magnetization of prist...
Stannic oxide SnO2 is a technologically important material which is frequently obtained by the oxida...
The electronic structures of N quantum dot molecules (QDMs) are investigated theoretically in the fr...
Using first principles calculations based on density functional theory (DFT), the electronic propert...
Dimensionality is an important factor to govern the electronic structures of semiconductor nanocryst...
Under external transverse electronic fields and hydrogen passivation, the electronic structure and b...
Several recent theoretical advances concerning semiconductor quantum dots are reviewed. First of all...
Several recent theoretical advances concerning semiconductor quantum dots are reviewed. First of all...
Oxygen vacancies at the SnO(2) (110) and (101) surface and subsurface sites have been studied in the...
Oxygen vacancies at the SnO(2) (110) and (101) surface and subsurface sites have been studied in the...
Oxygen vacancies at the SnO(2) (110) and (101) surface and subsurface sites have been studied in the...
The interplay between surface chemistry and quantum confinement on the band gap energies of indium a...
Oxygen vacancies at the SnO(2) (110) and (101) surface and subsurface sites have been studied in the...
The interplay between surface chemistry and quantum confinement on the band gap energies of indium a...
Quantum dot nanostructures incorporate unique mechanical and electronic properties that dictate thei...
We demonstrate a clear correlation between the quantum confinement effect and magnetization of prist...
Stannic oxide SnO2 is a technologically important material which is frequently obtained by the oxida...
The electronic structures of N quantum dot molecules (QDMs) are investigated theoretically in the fr...
Using first principles calculations based on density functional theory (DFT), the electronic propert...
Dimensionality is an important factor to govern the electronic structures of semiconductor nanocryst...
Under external transverse electronic fields and hydrogen passivation, the electronic structure and b...
Several recent theoretical advances concerning semiconductor quantum dots are reviewed. First of all...
Several recent theoretical advances concerning semiconductor quantum dots are reviewed. First of all...
Oxygen vacancies at the SnO(2) (110) and (101) surface and subsurface sites have been studied in the...
Oxygen vacancies at the SnO(2) (110) and (101) surface and subsurface sites have been studied in the...
Oxygen vacancies at the SnO(2) (110) and (101) surface and subsurface sites have been studied in the...
The interplay between surface chemistry and quantum confinement on the band gap energies of indium a...
Oxygen vacancies at the SnO(2) (110) and (101) surface and subsurface sites have been studied in the...
The interplay between surface chemistry and quantum confinement on the band gap energies of indium a...
Quantum dot nanostructures incorporate unique mechanical and electronic properties that dictate thei...
We demonstrate a clear correlation between the quantum confinement effect and magnetization of prist...
Stannic oxide SnO2 is a technologically important material which is frequently obtained by the oxida...
The electronic structures of N quantum dot molecules (QDMs) are investigated theoretically in the fr...