Role of Zinc Oxide Nanomaterials for Photocatalytic Degradation of Environmental Pollutants
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Publisher
Springer Nature Singapore
Link
https://link.springer.com/content/pdf/10.1007/978-981-99-7673-7_14
Reference84 articles.
1. Abdullah, F. H., Bakar, N. A., & Bakar, M. A. (2022). Current advancements in the fabrication, modification, and industrial application of zinc oxide as a photocatalyst in the removal of organic and inorganic contaminants in aquatic systems. Journal of Hazardous Materials, 424, 127416.
2. Ahmed, M. A., Abou-Gamra, Z. M., ALshakhanbeh, M. A., & Medien, H. (2019). Control synthesis of metallic gold nanoparticles homogeneously distributed on hexagonal ZnO nanoparticles for photocatalytic degradation of methylene blue dye. Environmental Nanotechnology, Monitoring and Management, 12, 100217.
3. Akkari, M., Aranda, P., Belver, C., Bedia, J., Amara, A. B. H., & Ruiz-Hitzky, E. (2018). Reprint of ZnO/sepiolite heterostructured materials for solar photocatalytic degradation of pharmaceuticals in wastewater. Applied Clay Science, 160, 3–8.
4. Arabi, M., Baizaee, S. M., Bahador, A., & Otaqsara, S. M. T. (2018). Rapid, controllable, one‐pot and room‐temperature aqueous synthesis of ZnO: Cu nanoparticles by a pulsed UV laser and its application for photocatalytic degradation of methyl orange. Luminescence, 33(3), 475–485.
5. Arun, J., Nachiappan, S., Rangarajan, G., Alagappan, R. P., Gopinath, K. P., & Lichtfouse, E. (2023). Synthesis and application of titanium dioxide photocatalysis for energy, decontamination, and viral disinfection: A review. Environmental Chemistry Letters, 21(1), 339–362.
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