Issue 12, 2022

An insight into the bridging role of Co3O4 in MOF-derived binary metal oxide modified sheet-like g-C3N4 for photo-assisted peroxymonosulfate activation

Abstract

The utilization of carbon nitride (g-C3N4) inevitably faces structural defects and inadequacy in photocatalytic performance. Recently, metal–organic framework (MOF) derivative doping has emerged as a way to functionally alter catalysts. Herein, we synthesize a MOF-derived binary metal oxide (ZnO/Co3O4/C)-modified sheet-like g-C3N4 (ZCC-SCN) catalyst via a hydrothermal process combined with a co-pyrolysis method and apply it in a photo-assisted peroxymonosulfate (PMS) activation system. The pyrolytic derivatization process endows ZCC-SCN with more porosity and larger surface area to favor the interfacial adsorption and reactivity of substrates. We validate a distinct ternary heterojunction composed of Co3O4–g-C3N4 and ZnO–Co3O4 in MOF derivatives. More notably, the enhanced CoIII/CoII cycling further supports the bridging role of Co3O4 in the synergistic photo-assisted PMS activation system. Finally, SO4˙ coupled with the more generated ˙O2 dominates together to drive the rapid degradation of tetracycline hydrochloride. Our work provides a new perspective on the MOF derivative modification to carbon-based materials and is meaningful for the investigation of photo-assisted PMS activation.

Graphical abstract: An insight into the bridging role of Co3O4 in MOF-derived binary metal oxide modified sheet-like g-C3N4 for photo-assisted peroxymonosulfate activation

Supplementary files

Article information

Article type
Paper
Submitted
13 Jul 2022
Accepted
06 Oct 2022
First published
26 Oct 2022

Environ. Sci.: Nano, 2022,9, 4393-4410

An insight into the bridging role of Co3O4 in MOF-derived binary metal oxide modified sheet-like g-C3N4 for photo-assisted peroxymonosulfate activation

G. Wang, D. Huang, M. Cheng, S. Chen, G. Zhang, L. Du, L. Lei, Y. Chen, R. Li and Y. Liu, Environ. Sci.: Nano, 2022, 9, 4393 DOI: 10.1039/D2EN00665K

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