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  4. Low bandgap high entropy alloy for visible light-assisted photocatalytic degradation of pharmaceutically active compounds: Performance assessment and mechanistic insights
 
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Low bandgap high entropy alloy for visible light-assisted photocatalytic degradation of pharmaceutically active compounds: Performance assessment and mechanistic insights

Source
Journal of Environmental Management
ISSN
03014797
Date Issued
2023-09-15
Author(s)
Das, Shubhasikha
Sanjay, M.
Singh Gautam, Abhay Raj  
Behera, Rakesh
Tiwary, Chandra Sekhar
Chowdhury, Shamik
DOI
10.1016/j.jenvman.2023.118081
Volume
342
Abstract
The incessant accumulation of pharmaceutically active compounds (PhACs) in various environmental compartments represents a global menace. Herein, an equimolar high entropy alloy (HEA), i.e., FeCoNiCuZn, is synthesized via a facile and scalable method, and its effectiveness in eliminating four different PhACs from aqueous matrices is rigorously examined. Attributing to its relatively low bandgap and multielement active sites, the as-synthesized quinary HEA demonstrates more pronounced photocatalytic decomposition efficiency, towards tetracycline (86%), sulfamethoxazole (94%), ibuprofen (80%), and diclofenac (99%), than conventional semiconductor-based photocatalysts, under visible light irradiation. Additionally, radical trapping assays are conducted, and the dissociation intermediates are identified, to probe the plausible photocatalytic degradation pathways. Further, the end-products of FeCoNiCuZn-mediated photocatalysis are apparently non-toxic, and the HEA can be successfully recycled repeatedly, with no obvious leaching of heavy metal ions. Overall, the findings of this study testify the applicability of FeCoNiCuZn as a visible light-active photocatalyst, for treating wastewaters contaminated with PhACs.
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URI
http://repository.iitgn.ac.in/handle/IITG2025/26640
Subjects
Degradation mechanism | Heterogeneous photocatalysis | High entropy alloys | Pharmaceutical residues | Visible light
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