Construction of Z-scheme CoFe2O4@ZnIn2S4 p-n heterojunction for enhanced photocatalytic hydrogen production
Author:
Publisher
Elsevier BV
Subject
Filtration and Separation,Analytical Chemistry
Reference59 articles.
1. Dual-functional marigold-like ZnxCd1-xS homojunction for selective glucose photoreforming with remarkable H2 coproduction;Kang;J Energy Chem,2023
2. Boosting water decomposition by sulfur vacancies for efficient CO2 photoreduction;Yin;Energ. Environ. Sci.,2022
3. Interface engineering of hierarchical branched Mo-doped Ni3S2/NixPy hollow heterostructure nanorods for efficient overall water splitting;Luo;Adv. Energy Mater.,2020
4. Towards the robust hydrogen (H2) fuel production with niobium complexes-A review;Islam;J. Clean. Prod.,2021
5. Construction of full solar-spectrum available S-scheme heterojunction for boosted photothermal-assisted photocatalytic H2 production;Shi;Chem. Eng. J.,2023
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