Integration of functional modules in a unified photoelectrochemical device for highly efficient solar-driven cathodic metal protection
Author:
Funder
National Natural Science Foundation of China
Publisher
Elsevier BV
Reference45 articles.
1. All-perovskite-based unassisted photoelectrochemical water splitting system for efficient, stable and scalable solar hydrogen production;Hansora;Nat. Energy,2024
2. Solar-to-hydrogen efficiency of more than 9% in photocatalytic water splitting;Zhou;Nature,2023
3. Floating perovskite-BiVO4 devices for scalable solar fuel production;Andrei;Nature,2022
4. Long-term solar water and CO2 splitting with photoelectrochemical BiOI-BiVO4 tandems;Andrei;Nat. Mater.,2022
5. Light-driven synthesis of C2H6 from CO2 and H2O on a bimetallic AuIr composite supported on InGaN nanowires;Zhou;Nat. Catal.,2023
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1. High-efficiency photocathodic protection performance of novel TiO2/ZnCdS heterojunction films for Q235 carbon steel;Materials Today Communications;2024-08
2. Directing the photogenerated charge flow in a photocathodic metal protection system with single‐domain ferroelectric PbTiO3 nanoplates;Electron;2024-06-26
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