In-situ efficient electrosynthesis of H2O2–NaClO based on the media pH and catalyst mutual selection mechanism
Publication type: Journal Article
Publication date: 2023-01-01
scimago Q1
wos Q1
SJR: 1.784
CiteScore: 14.9
Impact factor: 7.9
ISSN: 03787753, 18732755
Physical and Theoretical Chemistry
Electrical and Electronic Engineering
Energy Engineering and Power Technology
Renewable Energy, Sustainability and the Environment
Abstract
Electrochemical two-electron oxygen reduction (2e − ORR) as a promising H 2 O 2 synthesis strategy has been extensively explored, while the study on the relation between active sites at the catalyst surface and pH of applied medium is still scarce. Here in, the as-prepared catalysts by anodizing graphite felt in different media exhibit excellent H 2 O 2 production activity in acidic (151.73 mg L −1 h −1 cm −2 ), neutral (53.72 mg L −1 h −1 cm −2 ) and alkaline (188.85 mg L −1 h −1 cm −2 ) media, which is superior to the current advanced felt-supported carbon-based catalysts. According to characterizations, a mutual selection mechanism between the catalysts and media pH is proposed, in which it is the catalysts’ specific functional groups and structures matching with the pH-dependent electron transfer mechanism leading to the efficient H 2 O 2 production. When anolyte simulates the seawater environment in H-type cell, the simultaneous production of NaClO and H 2 O 2 and degradation of rhodamine B are realized, and H 2 O 2 accumulative concentration in solution reaches a breakthrough of 6.58 g L −1 . In general, this work provides new insights into the relation between the pH-dependent surface properties of catalysts and 2e − ORR reaction mechanism. In-situ H 2 O 2 –NaClO synthesis is also a promising route for chemicals synthesis and pollutant degradation. • Functionalized graphite felts prepared at different pH media for H 2 O 2 production. • Mutual selection mechanism between medium pH and catalyst surface properties. • Simultaneous synthesis of H 2 O 2 and NaClO in simulated seawater environment. • In-situ degradation of pollutants by H 2 O 2 and NaClO simultaneously.
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Total citations:
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Citations from 2025:
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Zhu Y. et al. In-situ efficient electrosynthesis of H2O2–NaClO based on the media pH and catalyst mutual selection mechanism // Journal of Power Sources. 2023. Vol. 553. p. 232306.
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Zhu Y., Yu C., Li J., Chen L., Cui Y., Liu Z., Wang H. In-situ efficient electrosynthesis of H2O2–NaClO based on the media pH and catalyst mutual selection mechanism // Journal of Power Sources. 2023. Vol. 553. p. 232306.
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TY - JOUR
DO - 10.1016/j.jpowsour.2022.232306
UR - https://doi.org/10.1016/j.jpowsour.2022.232306
TI - In-situ efficient electrosynthesis of H2O2–NaClO based on the media pH and catalyst mutual selection mechanism
T2 - Journal of Power Sources
AU - Zhu, Yibin
AU - Yu, Changyuan
AU - Li, Jie
AU - Chen, Long-Qing
AU - Cui, Yexiang
AU - Liu, Zhikun
AU - Wang, Huaiyuan
PY - 2023
DA - 2023/01/01
PB - Elsevier
SP - 232306
VL - 553
SN - 0378-7753
SN - 1873-2755
ER -
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@article{2023_Zhu,
author = {Yibin Zhu and Changyuan Yu and Jie Li and Long-Qing Chen and Yexiang Cui and Zhikun Liu and Huaiyuan Wang},
title = {In-situ efficient electrosynthesis of H2O2–NaClO based on the media pH and catalyst mutual selection mechanism},
journal = {Journal of Power Sources},
year = {2023},
volume = {553},
publisher = {Elsevier},
month = {jan},
url = {https://doi.org/10.1016/j.jpowsour.2022.232306},
pages = {232306},
doi = {10.1016/j.jpowsour.2022.232306}
}
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