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E-raamat: Hybrid Nanofillers for Polymer Reinforcement: Synthesis, Assembly, Characterization, and Applications

Edited by (Professor, Univ Rouen Normandie, INSA Rouen Normandie, CNRS, Groupe de Physique des Matériaux, Rouen, France), Edited by (Senior Researcher, School of Chemical Sciences, Mahatma Gandhi University, India), Edited by
  • Formaat: PDF+DRM
  • Sari: Micro & Nano Technologies
  • Ilmumisaeg: 12-Aug-2024
  • Kirjastus: Elsevier - Health Sciences Division
  • Keel: eng
  • ISBN-13: 9780323991407
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  • Formaat: PDF+DRM
  • Sari: Micro & Nano Technologies
  • Ilmumisaeg: 12-Aug-2024
  • Kirjastus: Elsevier - Health Sciences Division
  • Keel: eng
  • ISBN-13: 9780323991407

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Hybrid Nanofillers for Polymer Reinforcement: Synthesis, Assembly, Characterization, and Applications provides a targeted approach to hybrid nanostructures, enabling the development of these advanced nanomaterials for specific applications. The book begins by reviewing the status of hybrid nanostructures, their current applications, and future opportunities. This is followed by chapters examining synthesis and characterization techniques, as well as interactions within nanohybrid systems. The second part of the book provides detailed chapters each highlighting a particular application area and discussing the preparation of various hybrid nano systems that can potentially be utilized in that area.

The last chapters turn towards notable state-of-the-art hybrid nanomaterials and their properties and applications. This book is a valuable resource for researchers and advanced students across polymer science, nanotechnology, rubber technology, chemistry, sustainable materials, and materials engineering, as well as scientists, engineers, and R&D professionals with an interest in hybrid nanostructures or advanced nanomaterials for a industrial application.

  • Provides synthesis methods, characterization techniques, and structure-property analysis for hybrid nanostructures
  • Offers in-depth coverage that focuses on specific applications across energy storage, environment, automotive, aerospace, construction and biomedicine
  • Includes the latest novel areas, such as elastomeric hybrid nano systems, hybrid ceramic polymer nanocomposites, and self-assembled structures

Part 1: Introduction to hybrid nanostructures and systems
1. Introduction to hybrid nanomaterials: Future perspective and applications
2. Synthesis and characterization of hybrid nanostructures
3. Specific Interactions in nanohybrid systems Part 2: Applications of hybrid nanofillers
4. Hybrid nano systems for super capacitor applications
5. Hybrid nano materials for semiconductor applications
6. Hybrid nanofillers for electronic applications
7. Applications of hybrid nano systems in EMI shielding
8. Synthesis and characterization of hybrid nanofillers for solar cell applications
9. Hybrid nanoparticles for sensors
10. Advanced elastomeric hybrid materials for soft sensors
11. Hybrid nano systems in wastewater treatment
12. 3D printing of hybrid nanofillers for scaffold applications
13. Hybrid nanofillers for automotive industry
14. Aerospace industry and hybrid nano systems
15. Hybrid nanoparticles in the construction industry Part 3: Advanced hybrid nanofillers
16. Elastomeric hybrid nano systems for multifunctional applications
17. Synthesis and applications of hybrid ceramic polymer nanocomposites
18. Hybrid nanofillers in epoxy systems and their potential applications
19. Hybrid nanofillers and triboelectric generators
20. Synergistic effects of hybrid fillers in polymer nanocomposites
21. Self-assembled hybrid nanostructures for biomedical applications

Dr. Sabu Thomas (Ph.D.) is the Director of the School of Energy Materials, School of Nanoscience and Nanotechnology of Mahatma Gandhi University, India. He received his Ph. D. in 1987 in Polymer Engineering from the Indian Institute of Technology (IIT), Kharagpur, India. He is a fellow of the Royal Society of Chemistry, London, and a member of the American Chemical Society. He has been ranked no.1 in India about the number of publications (most productive scientists). Prof. Thomass research group specialized areas of polymers which includes Polymer blends, Fiber filled polymer composites, Particulate-filled polymer composites and their morphological characterization, Ageing and degradation, Pervaporation phenomena, sorption and diffusion, Interpenetrating polymer systems, Recyclability and reuse of waste plastics and rubbers, Elastomer cross-linking, Dual porous nanocomposite scaffolds for tissue engineering, etc. Prof. Thomass research group has extensive exchange programs with different industries, research, and academic institutions all over the world and is performing world-class collaborative research in various fields. Professors Centre is equipped with various sophisticated instruments and has established state-of-the-art experimental facilities which cater to the needs of researchers within the country and abroad. His H Index- 133, Google Citations- 86424, Number of Publications- 1300, and Books-160.

Prof. Allisson Saiter-Fourcin is a full professor of physics since 2017. She is responsible for the Department Desordered Systems and Polymers” of the GPM laboratory (UMR CNRS 6634) since 2022, and responsible for the International Masters Degree in Materials Sciences since 2016, at the University of Normandy, Rouen, France. She completed her PhD in Physics of Materials in 2002 at the University of Normandy, Rouen, France. Her research interests include advanced nanomaterials, glass transition, calorimetric analysis, glass forming liquids, structural relaxation phenomena, and physical ageing. She has 83 publications in international journals and has written two books. KP Jibin is a Senior Researcher at the School of Chemical Sciences, Mahatma Gandhi University, India. He completed his Master of Science degree in Analytical Chemistry in 2016, and was ranked first in the MSc Analytical Chemistry at Mahatma Gandhi University. Jibin has presented several papers at national and international conferences. As part of his work on nanomaterials, he has been involved in projects on optical studies of samarium complexes, synthesized using curcumin, isolated from turmeric extract as ligand, and on the synthesis of Mg and Co co-doped ZnO-based diluted magnetic semi-conductors, for optoelectronic applications. Currently he is working in the area of hybrid polymer nanocomposites for engineering applications. He has published 10 journal articles, more than 10 book chapters and edited two books.