Yong ChengYahan YangZao JiangLongjun XuChenglun Liu
β-Bi2O3/BiVO4/MnxZn1−xFe2O4 (BV/MZF) composite magnetic photocatalyst was first synthesized using the hydrothermal and calcination method. BV/MZF was a mesoporous material with most probable pore size and specific surface area of 18 nm and 17.84 m2/g, respectively. Due to its high saturation magnetization (2.67 emu/g), the BV/MZF composite can be easily separated and recovered from solution under an external magnetic field. The results of photo-decomposition experiments show that the decomposition rate of Rhodamine B (RhB) by BV/MZF can reach 92.6% in 3 h under visible light. After three cycles, BV/MZF can still maintain structural stability and excellent pollutant degradation effect. In addition, analysis of the photocatalytic mechanism of BV/MZF for RhB shows that the p-n heterojunction formed in BV/MZF plays a vital role in its photocatalytic performance. This work has potential application in the future for solving environmental pollution.
Qiyuan ZhangZhengxin YangRu ZhangYu HaoLongjun XuChenglun Liu
Minh Que DoanLinh Xuan NongTrinh Duy Nguyen
Wanqing ZhangMei WangZhao WenjiBaoquan Wang
Liping ZhangGuohong WangZhenzhong XiongHua TangChuanjia Jiang
Chung‐Hsin WuCheng‐Di DongChiu‐Wen ChenYi‐Li LinYurong ChengGuo-Yi Lee