Enhancing visible-light photocatalytic activity of α-Bi2O3 via non-metal N and S doping

No Thumbnail Available
File version
Author(s)
Shang, Jun
Gao, Yuan
Hao, Wei-Chang
Jing, Xi
Xin, Hui-Ju
Wang, Liang
Feng, Hai-Feng
Wang, Tian-Min
Griffith University Author(s)
Primary Supervisor
Other Supervisors
Editor(s)
Date
2014
Size
File type(s)
Location
License
Abstract

In recent years, some important research indicated that the visible-light activity of photocatalysts could be enhanced via incorporating p-block non-metal elements into the lattice. In this paper, we investigated the electronic structures of pure and different non-metal (C, N, S, F, Cl, and Br) doped α-Bi2O3 using first-principles calculations based on the density functional theory. The band structures, the electronic densities of states, and the effective masses of electrons and holes for doped α-Bi2O3 were obtained and analyzed. The N and S dopings narrowed the band gap and reduced the effective mass of the carriers, which are beneficial for the photocatalytic performance. The theoretical predication was further confirmed by the experimental results.

Journal Title

Chinese Physics B

Conference Title
Book Title
Edition
Volume

23

Issue

3

Thesis Type
Degree Program
School
Publisher link
Patent number
Funder(s)
Grant identifier(s)
Rights Statement
Rights Statement
Item Access Status
Note
Access the data
Related item(s)
Subject

Mathematical sciences

Physical sciences

Engineering

Science & Technology

Physics, Multidisciplinary

Physics

alpha-Bi2O3

Persistent link to this record
Citation

Shang, J; Gao, Y; Hao, W-C; Jing, X; Xin, H-J; Wang, L; Feng, H-F; Wang, T-M, Enhancing visible-light photocatalytic activity of α-Bi2O3 via non-metal N and S doping, Chinese Physics B, 2014, 23 (3), pp. 038103

Collections