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Ferrite Nanostructured Magnetic Materials

Technologies and Applications

Specificaties
Paperback, blz. | Engels
Elsevier Science | e druk, 2023
ISBN13: 9780128237175
Rubricering
Elsevier Science e druk, 2023 9780128237175
Verwachte levertijd ongeveer 9 werkdagen

Samenvatting

Ferrite Nanostructured Magnetic Materials: Technologies and Applications provides detailed descriptions of the physical properties of ferrite nanoparticles and thin films. Synthesis methods and their applications in numerous fields are also included. And, since characterization methods play an important role in investigating the materials’ phenomena, various characterization tools applied to ferrite materials are also discussed. To meet the requirements of next-generation characterization tools in the field of ferrite research, synchrotron radiation-based spectroscopic and imaging tools are thoroughly explored.

Finally, the book discusses current and emerging applications of ferrite nanostructured materials in industry, health, catalytic and environmental fields, making this comprehensive resource suitable for researchers and practitioners in the disciplines of materials science and engineering, chemistry and physics.

Specificaties

ISBN13:9780128237175
Taal:Engels
Bindwijze:Paperback

Inhoudsopgave

<p>Part 1 - Magnetism and Ferrite Nanostructure<br>1. Fundamentals of Magnetism<br>2. Classification and Types of Ferrites <br>3. Technical Magnetism<br>4. Magnetization processes in ferrite nanoparticles, thin films and nanowires<br>5. Spin-Canting in Ferrite Nanostructure Chapter</p> <p>Part 2 - Synthesis and Post-synthesis Approaches<br>6. Mechanical Milling of ferrite Nanoparticles<br>7. Ferrite Nanoparticles by Sol - gel Method<br>8. Synthesis of Ferrite Nanoparticles using Sonochemical Methods<br>9. Green Synthesis of Ferrite Nanoparticles<br>10. Synthesis of Rare Earth Doped Ferrite Nanoparticles<br>11. Synthesis of Ferrite Based Core-Shell Particles<br>12. Pulsed Laser Deposition of Ferrite Thin Films<br>13. RF sputtering of Ferrite Thin Films<br>14. Growth of Ferrite Thin Films using Molecular Beam Epitaxy<br>15. Atomic Layer Deposition of Ferrite Thin Films<br>16. Chemical Vapor Deposition of Ferrite Thin Films<br>17. Chemical Synthesis of Ferrite Thin Films<br>18. Growth of Nanorods and Nanotubes of Ferrites<br>19. Ferrite Nanoflowers<br>20. Synthesis of Ferrite Nanocubes<br>21. Ferrite nanoparticles and thin films irradiated by slow highly charged ion beams<br>22. Swift Heavy Ion Irradiation in Ferrite Nanostructures<br>23. Ion Implantation in Ferrites</p> <p>Part 3 - Characterisation Tools and Specific Behavior<br>24. Mössbauer Study of Ferrite Nanoparticles<br>25. Photoacoustic Spectroscopy and its Applications to Ferrite Materials<br>26. Cation Distribution in Ferrite Nanoparticles and Thin Films using X-ray Absorption Spectroscopy Methods<br>27. XMCD as a probe of cation distributions in ferrite nanoparticles<br>28. Raman Spectroscopy of Ferrites<br>29. Optical behavior of Ferrite Nanoparticles and Thin Films<br>30. Photocatalytic Activity of Ferrites<br>31. Dielectric properties of spinel ferrites nanostructures<br>32. Multiferroic Behavior of Ferrites<br>33. Magnetostriction Effects in Ferrites<br>34. Magneto Electrical Behaviour of Ferrite Based Composite<br>35. Verwey transition in Fe3O4</p> <p>Part 4 - Applications<br>36. Spinel Ferrites for Energy Applications<br>37. Ferrites use in magnetic recording<br>38. Spinel-Ferrite based Heterostructures for Spintronics Applications<br>39. Ferrite nanoparticles for hyperthermia<br>40. Nanostructured ferrite materials for theranostics<br>41. Ferrites and Fe-oxides as effective materials for the removal of CO2</p>

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