Assembling an S-type heterojunction comprising vacancy-rich CeO2-x and CuBi2O4 for improved photocatalytic oxidation of gaseous toluene
Burenbayaer Borjigin
1, 2
,
Lu Ding
2
,
Lan Ding
2
,
Chenghong Liu
1
,
Huiqin Li
2, 3
,
Xiao-Jing Wang
2
,
Xiaojing Wang
2, 4
,
Xiao Jing Wang
2, 4
1
Laboratory of Resource Processing and Environmental Protection, Institute of Resources and Ecological Environment, Baotou Research Institute of Rare Earth, Baotou, 014020, PR China
|
Publication type: Journal Article
Publication date: 2024-04-01
scimago Q1
wos Q1
SJR: 2.696
CiteScore: 20.6
Impact factor: 13.2
ISSN: 13858947, 18733212
General Chemistry
General Chemical Engineering
Industrial and Manufacturing Engineering
Environmental Chemistry
Abstract
The exploration of highly efficient methods for degrading VOCs, with concurrent low energy consumption and lasting reusability, holds significant appeal. In this regard, an S-type CuBi2O4/CeO2-x heterojunction with the robust interfacial interactions is presented as an active photocatalyst for the efficient decomposition of gaseous toluene under full-spectrum irradiation. The optimal sample CC15 effectively degrades gaseous toluene at a high concentration of 1800 ppm within 2 h, achieving a notable CO2 yield of 87.05 %, and a TOC (total organic carbon) removal rate of 89.33 %. Furthermore, CuBi2O4/CeO2-x exhibits exceptional stability, maintaining its 100 % degradation capability over 32 cycles for nearly 64 h. Comparative characterization reveals that the superior performance derives from an abundance of oxygen vacancies and effective pre-adsorption capabilities, which facilitate rapid adsorption of VOCs on the catalyst surface, thereby increasing the likelihood of degradation reactions. Additionally, the formation of an S-type heterojunction, valence pairing between Bi3+ and Ce3+/4+ ions, and strong interfacial interactions serve as the primary pathways for the efficient separation of photogenerated carriers, contributing to the high CO2 production rate and prolonged cycle stability. The present investigation underscores the significant potential of vacancy-rich S-type heterojunctions and interfacial interactions between composite components, offering excellent activity and long-term availability for VOCs removal.
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Total citations:
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Citations from 2025:
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(84.09%)
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Borjigin B. et al. Assembling an S-type heterojunction comprising vacancy-rich CeO2-x and CuBi2O4 for improved photocatalytic oxidation of gaseous toluene // Chemical Engineering Journal. 2024. Vol. 485. p. 149995.
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Borjigin B., Ding L., Ding L., Liu C., Li H., Wang X., Wang X., Wang X. J. Assembling an S-type heterojunction comprising vacancy-rich CeO2-x and CuBi2O4 for improved photocatalytic oxidation of gaseous toluene // Chemical Engineering Journal. 2024. Vol. 485. p. 149995.
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TY - JOUR
DO - 10.1016/j.cej.2024.149995
UR - https://linkinghub.elsevier.com/retrieve/pii/S1385894724014815
TI - Assembling an S-type heterojunction comprising vacancy-rich CeO2-x and CuBi2O4 for improved photocatalytic oxidation of gaseous toluene
T2 - Chemical Engineering Journal
AU - Borjigin, Burenbayaer
AU - Ding, Lu
AU - Ding, Lan
AU - Liu, Chenghong
AU - Li, Huiqin
AU - Wang, Xiao-Jing
AU - Wang, Xiaojing
AU - Wang, Xiao Jing
PY - 2024
DA - 2024/04/01
PB - Elsevier
SP - 149995
VL - 485
SN - 1385-8947
SN - 1873-3212
ER -
Cite this
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@article{2024_Borjigin,
author = {Burenbayaer Borjigin and Lu Ding and Lan Ding and Chenghong Liu and Huiqin Li and Xiao-Jing Wang and Xiaojing Wang and Xiao Jing Wang},
title = {Assembling an S-type heterojunction comprising vacancy-rich CeO2-x and CuBi2O4 for improved photocatalytic oxidation of gaseous toluene},
journal = {Chemical Engineering Journal},
year = {2024},
volume = {485},
publisher = {Elsevier},
month = {apr},
url = {https://linkinghub.elsevier.com/retrieve/pii/S1385894724014815},
pages = {149995},
doi = {10.1016/j.cej.2024.149995}
}
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