Fabrication of heterojunction ternary Fe3O4/TiO2/CoMoO4 as a magnetic photocatalyst for organic dyes degradation under sunlight irradiation
Author:
Publisher
Elsevier BV
Subject
General Physics and Astronomy,General Chemical Engineering,General Chemistry
Reference118 articles.
1. Cu doped TiO2-Bi2O3 nanocomposite for degradation of azo dye in aqueous solution: process modeling and optimization using central composite design;Barahimi;J. Environ. Chem. Eng.,2019
2. Novel assembly of homogeneous reduced graphene oxide-doped mesoporous TiO2hybrids for elimination of Rhodamine-B dye under visible light irradiation;Zhang;J. Alloys Compd.,2017
3. S. Singh, R. Sharma, M. Khanuja, A review and recent developments on strategies to improve the photocatalytic elimination of organic dye pollutants by BiOX (X=Cl, Br, I, F) nanostructures, 2018. https://doi.org/10.1007/s11814-018-0112-y.
4. ZnO-based mutable Ag2S/Ag2O multilayered architectures for organic dye degradation and inhibition of E. coli and B. subtilis;Zoha;J. Photochem. Photobiol. A Chem.,2020
5. The first ternary Nd-MOF/GO/Fe 3 O 4 nanocomposite exhibiting an excellent photocatalytic performance for dye degradation;Bai;Dalt. Trans.,2020
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