Multishelled hollow CaTiO3 cubes decorated with Co0.2Cd0.8S nanoparticles for efficient photocatalytic H2 evolution via S-scheme charge transfer
Author:
Funder
Key Scientific Research Project of Colleges and Universities in Henan Province
Publisher
Elsevier BV
Reference58 articles.
1. Constructing hierarchical ZnIn2S4/g-C3N4 S-scheme heterojunction for boosted CO2 photoreduction performance;Li;Chem. Eng. J.,2022
2. Solar-to-hydrogen efficiency of more than 9% in photocatalytic water splitting;Zhou;Nature,2023
3. Heterojunction architecture of Ce2S3 nanocubes with ZnxCd1-xS photocatalyst enables efficient hydrogen evolution;Zhang;Sep. Purif. Technol.,2023
4. Boosting photoelectron transport in Zn0.5Cd0.5S/Sn3O4 heterostructure through close interface contact for enhancing photocatalytic H2 generation and degradation of tetracycline hydrochloride;Zhou;Sep. Purif. Technol.,2023
5. Enhanced photocatalytic hydrogen evolution by piezoelectric effects based on MoSe2/Se-decorated CdS nanowire edge-on heterostructure;Han;J. Colloid Interf. Sci.,2023
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