降级(电信)
复合数
光催化
化学工程
材料科学
多孔性
催化作用
异质结
电子转移
化学
光化学
复合材料
光电子学
有机化学
电信
工程类
计算机科学
作者
Zhiquan Chen,Qingcan Xiang,Zongxue Yu,Juan Wang,Qiuyue Tan,Niandan He,Yan Chen
标识
DOI:10.1016/j.jwpe.2023.104524
摘要
The Z-scheme heterojunction photocatalyst Bi2S3/NH2-MIL-53 (Fe) was successfully constructed by in situ growth. The larger specific surface area and porosity of the composite provided more active sites for the photocatalytic reaction, which remarkably improved the photo-Fenton performance. The charge transfer mechanism effectively inhibits the recombination of electrons and holes, thereby significantly reducing the occurrence of photocorrosion. The degradation rates for CIP, TC-H, and SMX were 91 %, 87 %, and 86 % respectively. Additionally, the degradation rates for dyes all exceeded 98 % within 60 min, demonstrating their universal effectiveness in degrading pollutants. In addition, the materials showed good resistance to interference by natural organic matter. The good degradation rate remained after several cycles, indicating the high stability of the composite material. In conclusion, this study proposed a new method to design and fabricate composite photocatalysts using metal-organic skeletons, which provides a new way and feasible solution for the development of highly efficient photocatalytic materials and their application in the field of environmental purification.
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