Description
Spinel Ferrite Materials: Fundamentals, Progress, and Applications provides a systematic and comprehensive review of the latest research in ferrite materials to assist students, researchers, and practitioners. The book focuses on the synthesis methodology; the structural, electrical, and magnetic properties; and various applications of spinel ferrites. The book pays particular attention to synthesis techniques and subsequent applications in biomedicine, microwave absorption, nanoelectronics, wastewater treatment, sensing, and photocatalysis.- Provides a systematic, efficient, and comprehensive review of ferrite nanoparticles- Investigates the structural, electrical, and magnetic characteristics of spinel ferrite nanoparticles- Describes the advanced techniques required for the synthesis of spinel ferrite materials
Table of Contents
1. Spinel ferrites: introduction, types and structural analysis2. Recent progress in chemical synthesis techniques of spinel ferrites3. Estimation of cations distribution through internal field nuclear magnetic resonance in conjunction with supplementary techniques4. Basic theories responsible for electrical and magnetic properties in spinel ferrites5. Effect of synthesis techniques on the electric and magnetic properties of spinel ferrites6. Bio-medical applications of spinel ferrite nanoparticles7. Selection of spinel ferrite-based electromagnetic wave absorbing composites using AHP-based TOPSIS and VIKOR approaches8. Spinel ferrites for wastewater treatment applications9. Spinel ferrites as gas sensors10. Photo-Fenton applications of spinel ferrites11. Pressure induced analysis on the structural, optoelectronic, magnetic, and thermoelectric properties of spinel ferrites: a density functional theory study
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