Emerging hollow artificial photosynthetic system with S-scheme heterojunction sandwiched between layered redox cocatalysts for overall CO2 reduction and H2O oxidation
Author:
Publisher
Elsevier BV
Subject
Process Chemistry and Technology,General Environmental Science,Catalysis
Reference61 articles.
1. Towards molecular understanding of local chemical environment effects in electro- and photocatalytic CO2 reduction;Wagner;Nat. Catal.,2020
2. Photocatalytic conversion of CO2 into renewable hydrocarbon fuels: state-of-the-art accomplishment, challenges, and prospects;Tu;Adv. Mater.,2014
3. Photocatalytic reduction of CO2 on TiO2 and other semiconductors;Habisreutinger;Angew. Chem. Int. Ed.,2013
4. Recent advances in heterogeneous photocatalytic CO2 conversion to solar fuels;Li;ACS Catal.,2016
5. Steering charge kinetics in photocatalysis: intersection of materials syntheses, characterization techniques and theoretical simulations;Bai;Chem. Soc. Rev.,2015
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