This book provides a thorough examination of ferrite compounds manufactured using sophisticated sol-gel and calcination processes, with emphasis on their structural, dielectric, and magnetic properties. Using four novel investigations, the book examines the characterization of zinc nanoferrites at different calcination temperatures, revealing changes in crystalline, dielectric, and magnetic properties. Magnetic and dielectric studies of Bi-La ferrite compounds provide insights into phase transitions and functional characteristics. Biomedical applications include cytotoxicity studies on L929 cell lines and anticancer activity against breast cancer (MDAMB-231) cells employing oleic acid-coated MgFe₂O₄ nanoferrites. Investigated the physicochemical properties of bismuth and silver-doped nanoferrites, highlighting their dielectric performance and potential for various applications. This book combines magnetic, dielectric, cytotoxicity, and anticancer research, relating nanoferrite creation and characterization to biomedical applications. It serves as a rigorous, multidisciplinary reference for researchers, educators, and students interested in future nanoferrites.
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