Exploring the Medical Applications of SnO2 Nanomaterials: Antimicrobial, Antiviral, and Anticancer Therapies

Author:

Chandrasekaran Karthikeyan,Kokkarachedu Varaprasad,Sisubalan Natarajan,Vijayan Arumugam,Hendry Moses P.,Edison Raj Godwin P.,Kelvin Adaikalam C.,Gowri S.,Jason Mathews J.,Haja Hameed A. S.,Ebenezar J.

Publisher

Springer International Publishing

Reference38 articles.

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2. Ahmed, A. S., Azam, A., Muhamed Shafeeq, M., Chaman, M., & Tabassum, S. (2012). Temperature dependent structural and optical properties of tin oxide nanoparticles. Journal of Physics and Chemistry of Solids, 73(7), 943–947. https://doi.org/10.1016/j.jpcs.2012.02.030

3. Al-Hada, N., Kamari, H., Baqer, A., Shaari, A., & Saion, E. (2018). Thermal calcination-based production of SnO2 Nanopowder: An analysis of SnO2 nanoparticle characteristics and antibacterial activities. Nanomaterials, 8(4), 250. https://doi.org/10.3390/nano8040250

4. Bagheri-Mohagheghi, M.-M., Shahtahmasebi, N., Alinejad, M. R., Youssefi, A., & Shokooh-Saremi, M. (2008). The effect of the post-annealing temperature on the nano-structure and energy band gap of SnO2 semiconducting oxide nano-particles synthesized by polymerizing–complexing sol–gel method. Physica B: Condensed Matter, 403(13–16), 2431–2437. https://doi.org/10.1016/j.physb.2008.01.004

5. Bilge, S., Dogan Topal, B., Gokhan Caglayan, M., Altay Unal, M., Nazır, H., Bellur Atici, E., Sınağ, A., & Ozkan, S. A. (2023). SnO2 nanoparticles/waste masks carbon hybrid materials for DNA biosensor application on voltammetric detection of anti-cancer drug pazopanib. Bioelectrochemistry, 150, 108329. https://doi.org/10.1016/j.bioelechem.2022.108329

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