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Three-dimensional ordered macroporous g-C3N4-Cu2O-TiO2heterojunction for enhanced hydrogen production

Authors :
Chen, Ben
Yu, Jing
Wang, Rui
Zhang, Xianggong
He, Beibei
Jin, Jun
Wang, Huanwen
Gong, Yansheng
Source :
Science China Materials; January 2022, Vol. 65 Issue: 1 p139-146, 8p
Publication Year :
2022

Abstract

In this study, a g-C3N4-Cu2O-TiO2photocatalyst with a novel three-dimensional ordered macroporous (3DOM) structure was successfully prepared using a sacrificial template strategy and a photodeposition method. The influence of the special porous structure with cross pore channels on the photocatalytic properties of the as-prepared sample was studied in detail. Compared with the original photocatalyst (TiO2with 3 wt% Pt), g-C3N4-Cu2O-TiO2exhibited a higher specific surface area and more active sites, thus accelerating the separation efficiency of the photogenerated electron-hole pair. Consequently, the as-prepared photocatalyst showed good photocatalytic performance, reaching a maximum hydrogen production rate of 12,108 µmol g−1h−1and approximately five times higher than that of the pristine comparison sample. The enhanced photoactivity of the g-C3N4-Cu2O-TiO2heterojunction can be ascribed to its double p-n heterojunction and robust porous structure, where the photodeposited Cu2O plays a synergistic catalytic role in the photocatalytic process and the outer clad g-C3N4layer prevents Cu2O oxidation. Additionally, the possible photocatalytic mechanism was briefly discussed based on the experimental results. This work identifies viable pathways for developing low-cost heterojunction photocatalysts with highly efficient photocatalytic activity toward improved solar energy conversion.

Details

Language :
English
ISSN :
20958226 and 21994501
Volume :
65
Issue :
1
Database :
Supplemental Index
Journal :
Science China Materials
Publication Type :
Periodical
Accession number :
ejs57193702
Full Text :
https://doi.org/10.1007/s40843-021-1714-9