Ligand-engineered Cu-based halide perovskite for highly efficient near-infrared photocatalytic CO2 reduction

Author:

Ran Hongmei,Wu Daofu,Chen Wei,Liu Yichen,Gao Liqin,Zhou Jinchen,Gao Bo,Lai Junan,Luo Heng,Kuang Faguang,Mo Min,Luo Zhiqiong,Dong Fan,Ma Hao,Zhang Qian,Ling Faling,Sun Baofei,Tang XiaoshengORCID

Publisher

Elsevier BV

Reference55 articles.

1. Dual-functional copper (Cu0/Cu2+)-modified SrTiO3-δ nanosheets with enhanced photothermal catalytic performance for CO2 reduction and H2 evolution;Li;Chem. Eng. J.,2023

2. Solar fuels: research and development strategies to accelerate photocatalytic CO2 conversion into hydrocarbon fuels;Gong;Energy Environ. Sci.,2022

3. Floating perovskite-BiVO4 devices for scalable solar fuel production;Andrei;Nature,2022

4. Boosting CO2 Electroreduction to C2H4 via Unconventional Hybridization: High-Order Ce4+ 4f and O 2p Interaction in Ce-Cu2O for Stabilizing Cu+;Sun;ACS Nano,2023

5. Construction atomic-level N-P charge transfer channel for boosted CO2 photoreduction;Liu;Appl. Catal. B: Environ.,2023

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