Generating Long-Lived Charge Carriers in CDS Quantum Dots by Cu-Doping for Efficient Photocatalytic Co2 Reduction

Author:

Zhang Meng,Liu Zhihong,Wang Jin,Chen Zhihao,Zhang Qiaowen,Jiang Guocan,Li Zhengquan

Publisher

Elsevier BV

Reference42 articles.

1. In the dark condition, there is no obvious change over the in situ FT-IR spectra of Cu:CdS (Fig. 4c). Interestingly, some typical peaks associated with key intermediate species for CO 2 reduction appeared under light illumination. The intensities of characteristic peaks, such as HCO 3 -(1468 cm -1 ), *COOH (1633 cm -1 ), m-CO 3 2-(1378 cm -1 ) gradually increased during photocatalysis;contrast, only weak absorption peaks were observed on CdS (Fig. S13)

2. Light-Driven Heterogeneous Reduction of Carbon Dioxide: Photocatalysts and Photoelectrodes

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