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Nanoferrites for Electromagnetic Interference Shielding

Theory to Application

  • 1st Edition - March 1, 2027
  • Latest edition
  • Editors: Atul Thakur, Ritesh Verma, Nikhil Bhalla, Preeti Thakur
  • Language: English

Nanoferrites for Electromagnetic Interference Shielding: Theory to Application explores the fundamentals, synthesis, structural and functional properties, and real-world applic… Read more

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Description

Nanoferrites for Electromagnetic Interference Shielding: Theory to Application explores the fundamentals, synthesis, structural and functional properties, and real-world applications of nanoferrites for electromagnetic interference (EMI) shielding. It provides a thorough understanding of the role of nanoferrites in safeguarding electronic devices, enhancing environmental safety, and advancing next-generation technologies. From the basics of crystal structure to the latest advances in nanocomposites and thin films, readers will gain the knowledge needed to select, design, and optimize materials for high-performance EMI shielding. The book features detailed chapters on characterization techniques, the influence of morphology and temperature, and comparative analyses of shielding materials. It also addresses current challenges and future prospects, equipping researchers to tackle EMI shielding challenges in electronics, defense, healthcare, and data security.

Key features

  • Provides in-depth coverage of nanoferrite synthesis, structure, and electromagnetic properties for EMI shielding applications
  • Includes practical guidance on characterization methods, material selection, and the impact of morphology and temperature
  • Features comparative analyses and real-world case studies to help researchers overcome uncertainty in choosing the right nanoferrite materials for specific EMI shielding applications

Readership

Engineering researchers and upper-level students working with EMI shielding

Table of contents

1. Introduction and classification of Nanoferrites

2. Synthesis techniques for Nanoferrites

3. Structural and Morphological Characteristics of Nanoferrites

4. Electric and Magnetic characteristics of Nanoferrites

5. Electromagnetic Interference (EMI) and Necessity of Shielding

6. Theory and Mechanism of EMI Shielding

7. Characterization Involved in EMI Shielding

8. Materials for EMI Shielding

9. Role of Structure and Morphology of a Nanoferrites on EMI shielding

10. Role of Electric and Magnetic properties of Material in EMI Shielding application

11. Temperature Dependent EMI Shielding

12. EMI Shielding of Nanoferrites Thin Film

13. EMI Shielding Nanoferrites Powder

14. Nanocomposites for EMI shielding

15. EMI shielding by Nanoferrites for Safe Environment

16. EMI shielding of Nanoferrites in Electronic and Medical devices

17. EMI Shielding in Security and Data Technology

18. Future Prospects, Current Challenges and Solutions in Nanoferrites for EMI Shielding

Product details

  • Edition: 1
  • Latest edition
  • Published: March 1, 2027
  • Language: English

About the editors

AT

Atul Thakur

Atul Thakur is Director of the Amity Institute of Nanotechnology at Amity University Gurugram, India. His research interests are focused on ferrite nanomaterials for water purification, agricultural applications, microwave, high-frequency applications, radar-absorbing materials, antenna miniaturization, high-density memory storage systems, sensor applications, and metamaterials.

Affiliations and expertise
Director, Amity Institute of Nanotechnology, Amity University Gurugram, India

RV

Ritesh Verma

Ritesh Verma is an Assistant Professor in the Department of Physics at Graphic Era (Deemed to be) University Dehradun, India. His research interests lie in the areas of materials for energy applications, nanomaterials for EMI shielding, ceramic materials, ferrites, and green synthesis.

Affiliations and expertise
Assistant Professor, Department of Physics, Graphic Era (Deemed to be) University Dehradun, India

NB

Nikhil Bhalla

Nikhil Bhalla is an Assistant Professor in the School of Engineering at Ulster University, UK. His research is in the area of biosensing with a prime focus on nanoplasmonic technologies (such as LSPR) and interfacial science of biosensing materials, transducers, and biorecognition layers.

Affiliations and expertise
Assistant Professor, School of Engineering, Ulster University, UK

PT

Preeti Thakur

Preeti Thakur is Head of the Amity Centre for Nanotechnology at Amity University Gurugram, India. She has more than 22 years of teaching and research experience, focused on the synthesis and characterization of magnetic nanoparticles for radar-absorbing materials, sensors, high-frequency, wastewater treatment, and agricultural applications.
Affiliations and expertise
Head, Amity Centre for Nanotechnology, Amity University Gurugram, India