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Constructed Z-Scheme g-C 3 N 4 /Ag 3 VO 4 /rGO Photocatalysts with Multi-interfacial Electron-Transfer Paths for High Photoreduction of CO 2

作者:Ming Gao, Linlin Sun, Changchang Ma, Xin Li, Haopeng Jiang, Dong Shen, Huiqin Wang, Pengwei Huo · 发表于:Inorganic Chemistry · 年份:2021 · DOI:10.1021/acs.inorgchem.0c03233 · 被引用次数:70 · 研究领域:Advanced Photocatalysis Techniques、Perovskite Materials and Applications、Covalent Organic Framework Applications

Z-scheme g-C 3 N 4 /Ag 3 VO 4 /reduced graphene oxide (rGO) photocatalysts with multi-interfacial electron-transfer paths enhancing CO 2 photoreduction under UV–vis light irradiation were successfully prepared by a hydrothermal process. Transmission electron microscope images displayed that the prepared photocatalysts have a unique 2D–0D–2D ternary sandwich structure. Photoelectrochemical characterizations including TPR, electrochemical impedance spectroscopy, photoluminescence, and linear sweep voltammetry explained that the multi-interfacial structure effectively improved the separation and transmission capabilities of photogenerated carriers. Electron spin resonance spectroscopy and band position analysis proved that the electron-transfer mode of g-C 3 N 4 /Ag 3 VO 4 meets the Z-scheme mechanism. The introduction of rGO provided more electron-transfer paths for the photocatalysts and enhanced the stability of Ag-based semiconductors. In addition, the π–π conjugation effect between g-C 3 N 4 and rGO further improved the generation and separation efficiency of photogenerated electron–hole pairs. Then, the multiple channels (Ag 3 VO 4 → CN, Ag 3 VO 4 → rGO → CN, and rGO → CN) due to the 2D–0D–2D structure greatly improving the photocatalytic CO 2 reduction ability have been discussed in detail.