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Indirect Z-Scheme Assembly of 2D ZnV2O6/RGO/g-C3N4Nanosheets with RGO/pCN as Solid-State Electron Mediators toward Visible-Light-Enhanced CO2Reduction

Authors :
Bafaqeer, Abdullah
Tahir, Muhammad
Ali Khan, Azmat
Saidina Amin, Nor Aishah
Source :
Industrial & Engineering Chemistry Research; May 2019, Vol. 58 Issue: 20 p8612-8624, 13p
Publication Year :
2019

Abstract

Indirect Z-scheme assembly of graphene-bridged 2D ZnV2O6/pCN nanosheets composite has been fabricated by one-step solvothermal process and tested for photoinduced CO2conversion under visible-light irradiations. The highest CH3OH production of 3488 μmol g-cat–1was obtained over ZnV2O6/RGO/g-C3N4composite, 1.02 and 1.25 times higher comparing to ZnV2O6/RGO and ZnV2O6/g-C3N4samples, respectively. This enhanced efficiency can be ascribed to well-designed ternary heterojunction with hierarchical structure and efficient charges separation by RGO. More importantly, CH3OH yield was further improved by introducing RGO/pCN as an electron sink, which led to a 1.07 times higher yield than using only RGO. This reveals that ternary 2D ZnV2O6/RGO/pCN nanostructure has higher visible-light absorption, improved charge separation, and enhanced photocatalytic efficiency due to RGO/pCN as multiple mediators. The stability of composite catalyst also prevailed for 32 h for continuous CH3OH production. Therefore, structured Z-scheme composite with multiple electron mediators enables efficient CO2conversion under visible-light irradiation.

Details

Language :
English
ISSN :
08885885 and 15205045
Volume :
58
Issue :
20
Database :
Supplemental Index
Journal :
Industrial & Engineering Chemistry Research
Publication Type :
Periodical
Accession number :
ejs49772342
Full Text :
https://doi.org/10.1021/acs.iecr.8b06053