Issue 27, 2022

Insight into the enhanced photocatalytic activity mechanism of the Ag3VO4/CoWO4 p–n heterostructure under visible light

Abstract

A novel Ag3VO4/CoWO4 (AgCoO) p–n heterostructure was designed and prepared by an in situ growth method. The physicochemical properties of the as-prepared materials were characterized by multiple techniques, and the photocatalytic performances in Cr(VI) reduction and TC degradation were also evaluated under visible-light irradiation. The optimal AgCoO0.20 exhibited excellent Cr(VI) reduction activity (98.5% removal rate) and TC degradation activity (71.4% removal rate). The enhanced Cr(VI) reduction and TC degradation performances were attributed to fast transportation and efficient separation of the charge carriers due to the synergistic effect of the sufficient interfacial contact and the interaction between CoWO4 and Ag3VO4 induced by the formation of the p–n heterostructure. Ultimately, the possible enhanced photocatalytic mechanism over the Ag3VO4/CoWO4 p–n heterostructure composite was also proposed.

Graphical abstract: Insight into the enhanced photocatalytic activity mechanism of the Ag3VO4/CoWO4 p–n heterostructure under visible light

Supplementary files

Article information

Article type
Paper
Submitted
14 Apr 2022
Accepted
08 Jun 2022
First published
09 Jun 2022

CrystEngComm, 2022,24, 4899-4909

Insight into the enhanced photocatalytic activity mechanism of the Ag3VO4/CoWO4 p–n heterostructure under visible light

J. Xiong, H. Zeng, J. Peng, S. Xu and Z. Yang, CrystEngComm, 2022, 24, 4899 DOI: 10.1039/D2CE00524G

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