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Copper Vacancy and LSPR-Activated MXene Synergistically Enabling Selective Photoreduction CO2 to Acetate.

Authors :
Chen Liao
Hongwei Zhou
Shunxin Zhang
Feng Wang
Ya Liu
Liejin Guo
Source :
ChemSusChem; 6/24/2024, Vol. 17 Issue 12, p1-8, 8p
Publication Year :
2024

Abstract

Photocatalytic CO<subscript>2</subscript> conversion towards C<subscript>2+</subscript> fuels is a promising technology for simultaneously achieving carbon neutrality and alleviating the energy crisis. However, this strategy is inefficient due to the difficulty of both multi-electron transfer and C-C coupling during C<subscript>2+</subscript> formation. In this work, CuInS<subscript>2</subscript>/MXene heterostructure with Cu vacancy is rationally designed by in situ hydrothermal synthesis. The V<subscript>Cu</subscript>--CuInS<subscript>2</subscript>/MXene heterostructure has a suitable band structure and tight interface contact. Catalytic performances under different testing conditions, in situ spectroscopy, and COMSOL simulation reveal that LSPR-activated MXene promotes the formation of crucial intermediate CH<subscript>2</subscript>* and triggers the C--C coupling process under near-infrared light, as the key to acetate. Moreover, in situ XPS analysis, DFT calculations, and photoelectrochemical characterizations unveil that copper vacancy can promote charge transfer from CuInS<subscript>2</subscript> to MXene and boost local electron aggregation on the MXene, further enhancing the photocatalytic efficiency and selectivity of C<subscript>2</subscript> products. Contributing to the synergistic effect of copper vacancy and plasmonic MXene, V<subscript>Cu</subscript>--CuInS<subscript>2</subscript>/MXene achieved excellent CO<subscript>2</subscript>RR activity with an acetate evolution rate of 250.0 μmol/h/g and a selectivity of 97.5% under the full spectrum irradiation, which is 38.8 and 3.3 times higher than that of V<subscript>Cu</subscript>--CuInS<subscript>2</subscript>/MXene, respectively. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
18645631
Volume :
17
Issue :
12
Database :
Complementary Index
Journal :
ChemSusChem
Publication Type :
Academic Journal
Accession number :
178741513
Full Text :
https://doi.org/10.1002/cssc.202301927