Hybrid Nanofillers for Polymer Reinforcement

Hybrid Nanofillers for Polymer Reinforcement
Author :
Publisher : Elsevier
Total Pages : 609
Release :
ISBN-10 : 9780323991407
ISBN-13 : 0323991408
Rating : 4/5 (408 Downloads)

Book Synopsis Hybrid Nanofillers for Polymer Reinforcement by : Sabu Thomas

Download or read book Hybrid Nanofillers for Polymer Reinforcement written by Sabu Thomas and published by Elsevier. This book was released on 2024-08-12 with total page 609 pages. Available in PDF, EPUB and Kindle. Book excerpt: 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


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