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Oxygen and Chlorine Dual Vacancies Enable Photocatalytic O2Dissociation into Monatomic Reactive Oxygen on BiOCl for Refractory Aromatic Pollutant Removal

Authors :
Yang, Zhiping
Shi, Yanbiao
Li, Hao
Mao, Chengliang
Wang, Xiaobing
Liu, Xiufan
Liu, Xiao
Zhang, Lizhi
Source :
Environmental Science & Technology; March 2022, Vol. 56 Issue: 6 p3587-3595, 9p
Publication Year :
2022

Abstract

Room-temperature molecular oxygen (O2) dissociation is challenging toward chemical reactions due to its triplet ground-state and spin-forbidden characteristic. Herein, we demonstrate that BiOCl of oxygen and chlorine dual vacancies can photocatalytically dissociate O2into monatomic reactive oxygen (•O–) for the ring opening of aromatic refractory pollutants toward deep oxidation. The electron-rich and geometry-flexible dual vacancies of oxygen and chlorine remarkably lengthen the O–O bond of adsorbed O2from 1.21 to 2.74 Å, resulting in the rapid O2dissociation and the subsequent •O–formation. During the photocatalytic degradation of sulfamethazine, the in situ-formed •O–plays an indispensable role in breaking the critical intermediate of pyrimidine containing a stubborn aromatic heterocyclic ring, thus facilitating the overall mineralization. More importantly, BiOCl of oxygen and chlorine dual vacancies is also superior to its monovacancy counterparts on the degradation of other refractory pollutants containing conjugated six-membered rings, including p-chlorophenol, p-chloronitrobenzene, p-hydroxybenzoic acid, and p-nitrobenzoic acid. This study sheds light on the importance of sophisticated defects for regulating the O2activation manner and deliveries a novel O2activation approach for environmental remediation with solar energy.

Details

Language :
English
ISSN :
0013936X and 15205851
Volume :
56
Issue :
6
Database :
Supplemental Index
Journal :
Environmental Science & Technology
Publication Type :
Periodical
Accession number :
ejs59008389
Full Text :
https://doi.org/10.1021/acs.est.1c08532