Advanced spinel ferrite nanocomposites for electromagnetic interference shielding applications

Intro -- Advanced Spinel Ferrite Nanocomposites for Electromagnetic Interference Shielding Applications -- Copyright -- Contents -- About the authors -- Preface -- Chapter 1: Introduction -- 1.1. Spinel ferrite and its nanocomposites -- 1.2. Mechanism of electromagnetic interference shielding -- 1.2...

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1. Verfasser: Yadav, Raghvendra Singh (VerfasserIn)
Weitere Verfasser: Kuřitka, Ivo (VerfasserIn), Vilčáková, Jarmila (VerfasserIn)
Format: UnknownFormat
Sprache:eng
Veröffentlicht: Amsterdam, Kidlington, Oxford$Cambridge, MA Elsevier 2021
Schriftenreihe:Micro & nano technologies series
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Zusammenfassung:Intro -- Advanced Spinel Ferrite Nanocomposites for Electromagnetic Interference Shielding Applications -- Copyright -- Contents -- About the authors -- Preface -- Chapter 1: Introduction -- 1.1. Spinel ferrite and its nanocomposites -- 1.2. Mechanism of electromagnetic interference shielding -- 1.2.1. Shielding effectiveness through reflection -- 1.2.2. Shielding effectiveness through absorption -- 1.2.3. Shielding effectiveness through multiple reflections -- 1.3. Reflection loss -- 1.4. Properties associated with electromagnetic interference shielding mechanism -- 1.4.1. Dielectric and magnetic loss -- 1.4.2. Source of dielectric loss -- 1.4.3. Source of magnetic loss -- 1.5. Parameters governing electromagnetic interference shielding mechanism -- 1.5.1. Impedance matching condition -- 1.5.2. Attenuation constant -- 1.6. Conclusion and prospects -- Acknowledgment -- References -- Chapter 2: Spinel ferrite nanocomposites formation and characterization -- 2.1. Introduction -- 2.2. Synthesis of spinel ferrite nanoparticles -- 2.2.1. Coprecipitation method -- 2.2.2. Solvothermal method and hydrothermal method -- 2.2.3. Sol-gel method -- 2.2.4. Microwave-assisted method -- 2.2.5. Sonochemical method -- 2.2.6. Combustion synthesis method -- 2.3. Preparation of spinel ferrite nanocomposites -- 2.3.1. Preparation methods of inorganic material and spinel ferrite-based nanocomposites -- 2.3.2. Preparation methods of polymer spinel ferrite nanocomposites -- 2.3.2.1. In situ polymerization -- 2.3.2.2. Solution casting -- 2.3.2.3. Melt blending -- 2.4. Experimental measurement techniques for electromagnetic interference shielding -- 2.4.1. Waveguide method -- 2.4.2. Coaxial airline method -- 2.4.3. Free space method -- 2.5. Other measurement techniques for electromagnetic interference shielding material -- 2.6. Conclusion and prospects -- Acknowledgment.
Beschreibung:xvi, 193 Seiten
ISBN:9780128212905
978-0-12-821290-5