Journal of Metals, Materials and Minerals
Publication Date
2024
Abstract
The development of Z-scheme heterojunctions has emerged as an effective approach for boosting the photocatalytic activity. Herein, we fabricated of a direct Z-scheme heterojunction between scaffold-like C3N4 and nanocylindrical Bi25FeO40, which exhibits enhanced photocatalytic activity and dye adsorption capacity. The in-situ embedding of Bi25FeO40 within scaffold C3N4 promotes photogenerated carrier separation, leading to an optimized degradation rate of 0.0205 min−1 and a contaminant removal efficiency of 85.3%. This work paves a new path for the development of high-efficiency photocatalytic degradation.
DOI
10.55713/jmmm.v34i4.2167
First Page
-
Last Page
-
Recommended Citation
Wang, Yile; Ma, Yuhui; Chu, Liang; and Li, Xing'ao
(2024)
"In-situ embedding of nanocylindrical Bi25FeO40 into scaffold-C3N4 for enhanced Z-scheme photocatalytic degradation,"
Journal of Metals, Materials and Minerals: Vol. 34:
No.
4, Article 13.
DOI: 10.55713/jmmm.v34i4.2167
Available at:
https://digital.car.chula.ac.th/jmmm/vol34/iss4/13