
eBook - ePub
Porous Nanocomposites for Electromagnetic Interference Shielding
- 525 pages
- English
- ePUB (mobile friendly)
- Available on iOS & Android
eBook - ePub
Porous Nanocomposites for Electromagnetic Interference Shielding
About this book
Porous Nanocomposites for Electromagnetic Interference Shielding thoroughly discusses the fabrication, processing and design parameters of advanced materials for electromagnetic pollution suppression for high-frequency electronics. The book provides readers with an understanding of the important concepts and relevant advances in the engineering of porous nanocomposites for enhanced microwave absorption and EMI shielding. Porous materials reviewed include foams and aerogels which offer a robust and lightweight solution to design and fabricate microwave absorbers that can be a potential solution to stifle electromagnetic (EM) pollution.
The aim of this book is to review the recent advances in the area of porous nanocomposites that have the ability to absorb EM radiation and thereby suppress EM pollution. It will be ideal for materials scientists and engineers working in academia, research and development in industry.
- Reviews the latest advances in the fabrication, processing, and design of porous nanocomposites for enhanced microwave absorption and EMI shielding applications
- Provides key information on the most relevant porous nanocomposites for EMI shielding, including aerogels and foams derived from polymers, ceramics, carbon, and other advanced materials
- Discusses life cycle analysis and recycling considerations of porous nanocomposites
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Information
Table of contents
- Porous Nanocomposites for Electromagnetic Interference Shielding
- Cover
- Title Page
- Copyright
- Table of Contents
- List of contributors
- About the editors
- Preface
- Chapter 1 Electromagnetic absorption, shielding, and hazard from microwaves to terahertz
- Chapter 2 Advanced porous composites for electromagnetic intereference shielding
- Chapter 3 Measurement techniques for electromagnetic interference shielding and microwave absorption in porous nanocomposites
- Chapter 4 Fundamental theory of microwave absorption for films of porous nanocomposites: role of interfaces in composite fillers
- Chapter 5 Elastomeric nanocomposite foams for electromagnetic interference shielding
- Chapter 6 Thermoplastic nanocomposite foams for electromagnetic interference shielding
- Chapter 7 Thermosetting nanocomposite foams for electromagnetic interference shielding
- Chapter 8 Biodegradable polymer-based nanocomposite foams for electromagnetic interference shielding
- Chapter 9 Three-dimensional porous graphene-polymer frameworks for electromagnetic interference shielding
- Chapter 10 Porous carbon nanotube frameworks for electromagnetic interference shielding
- Chapter 11 Polyimide nanocomposite foams and aerogels for electromagnetic interference shielding
- Chapter 12 Biomass-derived porous carbon for electromagnetic interference shielding
- Chapter 13 Ceramic nanocomposite foams for electromagnetic interference shielding
- Chapter 14 Metallic nanocomposite foams for electromagnetic interference shielding
- Chapter 15 Metal organic framework (MOF)-anchored polymeric nanocomposite foams for electromagnetic interference shielding
- Chapter 16 High performance polymer-based nanocomposite foams for electromagnetic interference shielding
- Chapter 17 Intrinsically conducting polymer-based nanocomposite aerogels for electromagnetic interference shielding
- Chapter 18 Porous polysaccharide nanocomposites for electromagnetic interference shielding
- Chapter 19 MXene-based aerogels for electromagnetic interference shielding
- Chapter 20 Hybrid MXene foams for electromagnetic interference shielding
- Index
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Yes, you can access Porous Nanocomposites for Electromagnetic Interference Shielding by Sabu Thomas, Claudio Paoloni, Avinash R. Pai, Sabu Thomas,Claudio Paoloni,Avinash R. Pai in PDF and/or ePUB format, as well as other popular books in Technology & Engineering & Electrical Engineering & Telecommunications. We have over 1.5 million books available in our catalogue for you to explore.