Construction of PDIsa/BiOBr type-I scheme heterojunction for efficient ciprofloxacin photocatalytic degradation

被引:0
|
作者
Jinhui Huang
Hanbo Yu
Xingzhong Yuan
Xue Li
Longbo Jiang
Kaixin Yi
Chenyu Zhang
机构
[1] Hunan University,College of Environmental Science and Engineering
[2] Hunan University,Key Laboratory of Environment Biology and Pollution Control
[3] Ministry of Education,School of Hydraulic and Environmental Engineering
[4] Changsha University of Science & Technology,Department of Bioengineering and Enviromental Science
[5] Key Laboratory of Dongting Lake Aquatic Eco-Environmental Control and Restoration of Hunan Province,undefined
[6] Changsha University,undefined
关键词
Photocatalytic; Perylene diimide; Bismuth oxybromide; Type-I heterojunction; Antibiotic ciprofloxacin;
D O I
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中图分类号
学科分类号
摘要
Fabrication of heterojunction photocatalysts is a promising strategy for enhancing photocatalytic activity. However, the study about traditional type-I heterojunction still remains to be developed. Herein, a PDIsa/BiOBr traditional type-I heterojunction was constructed by electrostatic self-assembly method, which owned improved light absorption capacity and photogenerated charge separation efficiency. The interfacial electric field and the polarization electric field of PDIsa impelled the separation of excitons. The degradation rate of ciprofloxacin (CIP) was improved by 3.2 times over the optimal PDIsa/BiOBr composite than pure BiOBr. In addition, the TOC removal efficiency reached 67.34% within 120 min. Trapping experiments and electron spin resonance (ESR) tests showed that superoxide radical (•O2−) was the most active species, and singlet oxygen (1O2) and hole (h+) played a secondary role. The work may furnish a new reference for designing BiOBr-based type-I heterojunction.
引用
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页码:19210 / 19223
页数:13
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