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Hierarchically porous CsPbBr3@HZIF-8 heterojunctions for high-performance photocatalytic degradation of antibiotics in high-salinity wastewater.

Authors :
Hou, Yangwen
Meng, Fanfei
He, Jingting
Dong, Man
Tong, Jialin
Sun, Jing
Sun, Chunyi
Wang, Xinlong
Su, Zhongmin
Source :
Journal of Materials Chemistry C; 10/21/2023, Vol. 11 Issue 39, p13570-13578, 9p
Publication Year :
2023

Abstract

The photocatalytic degradation of tetracycline hydrochloride (TCH) under high salinity poses a significant challenge due to the inhibitory effect of coexisting ions on reactive oxygen species in wastewater. Herein, a series of hierarchically porous Z-scheme CsPbBr<subscript>3</subscript>@HZIF-8 heterojunctions were synthesized by a sequential deposition method. Benefiting from the stable hierarchical pore structure of HZIF-8 and the excellent optoelectronic properties of CsPbBr<subscript>3</subscript>, the hierarchical pore Z-scheme heterojunction CsPbBr<subscript>3</subscript>@HZIF-8 not only facilitates the mass transfer and enrichment of pollutants but also accelerates the transfer of carriers between HZIF-8 and CsPbBr<subscript>3</subscript>, leading to enhanced generation of reactive oxygen species. Moreover, CsPbBr<subscript>3</subscript> serves as a photosensitizer for energy transfer, generating singlet oxygen (<superscript>1</superscript>O<subscript>2</subscript>) with higher resistance to ion interference. As a result, the 4%-CsPbBr<subscript>3</subscript>@HZIF-8 achieved the highest visible light degradation efficiency of TCH (94% in 40 min), surpassing those of most reported CsPbBr<subscript>3</subscript>-based photocatalysts. The catalytic system consistently degrades contaminants in deionized water, high ion concentrations, and real water matrices. The photocatalytic reaction mechanisms, involving charge carrier transfer, reactive species generation, and TCH degradation intermediate products, are thoroughly investigated. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
20507526
Volume :
11
Issue :
39
Database :
Complementary Index
Journal :
Journal of Materials Chemistry C
Publication Type :
Academic Journal
Accession number :
172960682
Full Text :
https://doi.org/10.1039/d3tc02493h