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Promoted photocarrier transfer and increased active sites for optimal CO2-to-CH4 photoconversion via the modification of atomically dispersed transition metal ions in CdZnS nanocrystals. Issue 36 (25th August 2021)
Record Type:
Journal Article
Title:
Promoted photocarrier transfer and increased active sites for optimal CO2-to-CH4 photoconversion via the modification of atomically dispersed transition metal ions in CdZnS nanocrystals. Issue 36 (25th August 2021)
Main Title:
Promoted photocarrier transfer and increased active sites for optimal CO2-to-CH4 photoconversion via the modification of atomically dispersed transition metal ions in CdZnS nanocrystals
Abstract : Atomically dispersed transition metal ion doped CdZnS nanocrystals have shown enhanced capacity and selectivity for photocatalytic CO2 -to-CH4 conversion. Abstract : Atomically dispersed transition metal ion doped CdZnS nanocrystals were synthesized to delicately tune the selectivity for CO2 photoreduction to CH4, among which the CZS–Cu 2+ achieved an excellent CO2 -to-CH4 conversion rate of ca. 665.9 μL h −1 g −1 with a high selectivity of ca. 79.7% under visible irradiation.