Z-scheme heterojunction composed of Fe-doped g-C3N4 and Bi2MoO6 for photo-fenton degradation of antibiotics over a wide pH range: Activity and toxicity assessment
Author:
Funder
Jilin Provincial Scientific and Technological Development Program
Publisher
Elsevier BV
Reference63 articles.
1. Fe-doped g-C3N4 synthesized by supramolecular preorganization for enhanced photo-Fenton activity;An;Sep. Purif. Technol.,2023
2. Heterogeneous Fenton-and photo-Fenton-like catalytic degradation of emerging pollutants using Fe2O3/TiO2/pillared clays synthesized from aluminum industrial wastes;Cardona;J. Water Process Eng.,2023
3. Enhanced degradation of tetracycline under natural sunlight through the synergistic effect of Ag3PO4/MIL-101(Fe) photocatalysis and Fenton catalysis: mechanism, pathway, and toxicity assessment;Chen;J. Hazard Mater.,2023
4. Mesoporous structure and amorphous Fe-N sites regulation in Fe-g-C3N4 for boosted visible-light-driven photo-Fenton reaction;Ding;J. Colloid Interface Sci.,2022
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1. Novel high entropy alloy/NiAl2O4 photocatalysts for the degradation of tetracycline hydrochloride: Heterojunction construction, performance evaluation and mechanistic insights;Ceramics International;2024-09
2. Preparation of La-doped NiAl-LDH with boosted electron transfer for the enhanced photocatalytic activity of tetracycline: Performance evaluation, degradation pathway, and mechanism insight;Journal of Alloys and Compounds;2024-09
3. g‐C3N4 Based Composite Materials for Photo‐Fenton Reaction in Water Remediation: A Review of Synthesis Methods, Mechanism and Applications;ChemCatChem;2024-08-14
4. Photoelectrocatalytic removal of antibiotic ciprofloxacin using a photoanode based on Z-scheme heterojunction;Chemical Engineering Journal;2024-08
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