Nanoparticle-Based Polymer Composites discusses recent advancements on the synthesis, processing, characterization and applications of this new class of hybrid materials. Chapters cover recycling and lifecycle assessment, with contributions from leading researchers in industry, academics, the government and private research institutes from across the globe. As nanoparticle-based polymer composites are now replacing traditional polymer composites in a broad range of applications such as fuel cells, electronic and biomedical devices, this book presents the latest advancements in the…mehr
Nanoparticle-Based Polymer Composites discusses recent advancements on the synthesis, processing, characterization and applications of this new class of hybrid materials. Chapters cover recycling and lifecycle assessment, with contributions from leading researchers in industry, academics, the government and private research institutes from across the globe. As nanoparticle-based polymer composites are now replacing traditional polymer composites in a broad range of applications such as fuel cells, electronic and biomedical devices, this book presents the latest advancements in the field.
Studies have shown that incorporating metal nanoparticles in polymer matrices can improve their mechanical, thermal, electrical and barrier properties. The unique combination of these properties makes this new class of materials suitable for a broad range of different and advanced applications.
Produktdetails
Produktdetails
Woodhead Publishing Series in Composites Science and Engineering
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Autorenporträt
Sanjay Mavinkere Rangappa serves as a Principal Research Scientist and Advisor for International Development at King Mongkut's University of Technology North Bangkok, Thailand. He holds a BEng in Mechanical Engineering (2010), an MTech in Computational Analysis (2013), and a PhD in Mechanical Engineering Science (2018) from Visvesvaraya Technological University, India, followed by a Post-Doctorate from KMUTNB (2019). A prolific researcher in materials science and composites, his research focuses on natural fiber composites, polymer composites, and advanced material technology. He has received multiple accolades, including Outstanding Researcher Award 2021 from KMUTNB and recognition in Stanford University's Top 2% Most-Cited Scientists list. He also serves as an Associate Editor for Elsevier's Heliyon and Frontier Materials, while holding seven patents across UK, Thailand, and India.
Prof. Jyotishkumar Parameswaranpillai is currently the Director of AU - Sophisticated Testing and Instrumentation Center, Alliance University, Bengaluru, India, and Professor at the Department of Science, Alliance University, Bengaluru, India. He is a frequently invited speaker and consultant for multiple international organizations. Additionally, he has received numerous prestigious awards, including the DST INSPIRE Faculty Award from the Government of India and the Best Faculty Awards from KMUTNB, Thailand and Alliance University India.
Inhaltsangabe
1. Introduction to metal nanoparticle -based materials and their composites 2. Synthesis of metal nanoparticles 3. Properties of metal nanoparticles 4. Preparation of metal nanoparticle-based polymer composites 5. Mechanical properties of metal nanoparticle-based polymer composites 6. Rheology of metal nanoparticle-based polymer composites 7. Thermal properties of metal nanoparticle-based polymer composites 8. Dynamic Mechanical Thermal Analysis of metal nanoparticles/polymer nanocomposites 9. Morphology of metal nanoparticle-based polymer composites 10. Scattering and spectroscopy studies of metal nanoparticle-based polymer composites 11. Electrical and dielectric properties of metal nanoparticle-based polymer composites 12. Barrier properties of metal nanoparticle-based polymer composites 13. Modeling and simulation of metal nanoparticle-based polymer composites 14. Applications, drawbacks and future scope of metal nanoparticle-based polymer composites
1. Introduction to metal nanoparticle -based materials and their composites 2. Synthesis of metal nanoparticles 3. Properties of metal nanoparticles 4. Preparation of metal nanoparticle-based polymer composites 5. Mechanical properties of metal nanoparticle-based polymer composites 6. Rheology of metal nanoparticle-based polymer composites 7. Thermal properties of metal nanoparticle-based polymer composites 8. Dynamic Mechanical Thermal Analysis of metal nanoparticles/polymer nanocomposites 9. Morphology of metal nanoparticle-based polymer composites 10. Scattering and spectroscopy studies of metal nanoparticle-based polymer composites 11. Electrical and dielectric properties of metal nanoparticle-based polymer composites 12. Barrier properties of metal nanoparticle-based polymer composites 13. Modeling and simulation of metal nanoparticle-based polymer composites 14. Applications, drawbacks and future scope of metal nanoparticle-based polymer composites
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