Quantum Confinement and Electronic Properties of Rutile TiO2 Nanowires


Autoria(s): Peng HW; Li JB
Data(s)

2008

Resumo

The quantum confinement effect, electronic properties, and optical properties of TiO2 nanowires in rutile structure are investigated via first-principles calculations. We calculate the size- and shape-dependent band gap of the nanowires and fit the results with the function E-g = E-g(bulk) + beta/d(alpha). We find that the quantum confinement effect becomes significant for d < 25 angstrom, and a notable anisotropy exists that arises from the anisotropy of the effective masses. We also evaluate the imaginary part of the frequency-dependent dielectric function [epsilon(2)(omega)] within the electric-dipole approximation, for both the polarization parallel [epsilon(parallel to)(2)(omega)] and the perpendicular [epsilon 1/2(omega)] to the axial (c) direction. The band structure of the nanowires is calculated, with which the fine structure of epsilon(parallel to)(2)(omega) has been analyzed.

Chinese Academy of Sciences J.L. gratefully acknowledges financial support from the "One-hundred Talents Plan" of the Chinese Academy of Sciences. We also acknowledge Jurgen Furthmuller for utilizing his code<SUP>21</SUP> to calculate the optical properties.

Identificador

http://ir.semi.ac.cn/handle/172111/7447

http://www.irgrid.ac.cn/handle/1471x/63461

Idioma(s)

英语

Fonte

Peng HW ; Li JB .Quantum Confinement and Electronic Properties of Rutile TiO2 Nanowires ,JOURNAL OF PHYSICAL CHEMISTRY C,2008 ,112(51):20241-20245

Palavras-Chave #半导体化学 #TOTAL-ENERGY CALCULATIONS #SENSITIZED SOLAR-CELLS #WAVE BASIS-SET #TITANIUM-DIOXIDE #NANOPARTICLES #EFFICIENCY #DOTS
Tipo

期刊论文