CsPbBr quantum dots were grown on ReS nanosheets to form CsPbBr@ReS heterojunctions using an anti-solvent method. The composition, morphology, spatial distribution, and optical absorption of samples were characterized. CsPbBr@ReS-15 exhibits not only a higher photocatalytic performance than CsPbBr due to the improved optical absorption and Z-scheme charge migration, but also a higher CO conversion ratio (35.60%) and energy efficiency (13.10%) in the dielectric barrier discharge (DBD) plasma due to superior photocatalytic activity, increased micro-discharge time, and improved discharge uniformity. This work provides a strategy for plasma photocatalytic CO conversion.

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http://dx.doi.org/10.1039/d4cc02753aDOI Listing

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