One-pot synthesis of In2O3/ZnO nanocomposite photocatalysts and their enhanced photocatalytic activity against cationic and anionic dye pollutants
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Inorganic Chemistry,Physical and Theoretical Chemistry
Reference44 articles.
1. Sulfate radical technologies as tertiary treatment for the removal of emerging contaminants from wastewater;Brienza;Sustainability.,2017
2. Advanced oxidation processes: Performance, advantages, and scale-up of emerging technologies;Priyadarshini;J. Environ. Manage.,2022
3. Photocatalytic activity and stability properties of porous TiO2 film as photocatalyst for methylene blue and methylene orange degradation;Sadikin;Int. J. Electrochem. Sci.,2023
4. Potential progress in SnO2 nanostructures for enhancing photocatalytic degradation of organic pollutants;Shabna;Catal. Commun.,2023
5. 3D ZnO sunstar rose nanoflowers morphology with surfactant-assisted reflux exhibit excellent optical properties and photocatalytic activity against hazardous organic dyes;Sudapalli;Opt. Mater.,2023
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