Applied Catalysis2022,Vol.30311.DOI:10.1016/j.apcatb.2021.120877

Engineering the low-coordinated single cobalt atom to boost persulfate activation for enhanced organic pollutant oxidation

Liang, Xiaoying Wang, Di Zhao, Zhiyu Li, Tong Chen, Zhenhuan Gao, Yaowen Hu, Chun
Applied Catalysis2022,Vol.30311.DOI:10.1016/j.apcatb.2021.120877

Engineering the low-coordinated single cobalt atom to boost persulfate activation for enhanced organic pollutant oxidation

Liang, Xiaoying 1Wang, Di 1Zhao, Zhiyu 1Li, Tong 1Chen, Zhenhuan 1Gao, Yaowen 1Hu, Chun1
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作者信息

  • 1. Guangzhou Univ
  • 折叠

Abstract

Two atomically dispersed cobalt catalysts with different nitrogen coordination numbers (denoted as Co-SA-N-x-C) were synthesized and firstly compared to activate peroxydisulfate (PDS) for bisphenol A (BPA) degradation. Theoretical calculations unveiled that lowering the Co-N coordination number from four to three can apparently increase the electron density of the single Co atom in Co-SA-N-3-C to enhance PDS conversion. The low coordinated Co-SA-N-3-C with Co-N-3 coordination structure displays a high specific activity of 0.067 L min(-1) m(-2), which is 1.31 times greater than that of Co-SA-N-4-C with normal Co-N-4 configuration (0.051 L min(-1) m(-2)) in PDS activation. Electron paramagnetic resonance (EPR) measurements and quenching tests confirmed the primary role of sulfate radical (SO4 center dot-) in BPA oxidation over Co-SA-N-3-C with PDS. Moreover, Co-SA-N-3-C delivers favorable durability for PDS activation and potential practicability for realistic wastewater remediation. These findings provide a novel and useful avenue to coordination number modulation of SACs for wider environmental applications.

Key words

Single-atom catalysts/Coordination number/Electron density/Persulfate conversion/Active radicals/WATER-TREATMENT/DEGRADATION/PEROXYMONOSULFATE/CARBON/CONTAMINANTS/CHALLENGES/GENERATION/FRAMEWORKS/CATALYSIS/RADICALS

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出版年

2022
Applied Catalysis

Applied Catalysis

ISSN:0926-3373
被引量35
参考文献量52
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