Multifunctional Carbon Nano-Onions Based Nanocomposites

Fundamentals, Design and Applications

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Elsevier


Paru le : 2026-01-21



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Description
Multifunctional Carbon Nano-Onion Based Nanocomposites: Synthesis, Properties and Applications is a comprehensive guide that delves into the structure, design, fabrication, and functional characteristics of carbon nano-onions (CNOs) and their applications in nanocomposites. The book covers timely and significant advances in the field of CNOs, highlighting their unique microstructural, electrical, thermal, mechanical, tribological, and biological properties. It provides a detailed examination of CNOs' roles in various matrices, including thermoplastics, thermosetting polymers, conjugated polymers, rubbers, metals, and metal oxides. Key topics include environmental sustainability, energy storage and conversion (such as solar cells and lithium-ion batteries), electronic applications (sensors), and biomedical applications.In addition, it discusses the challenges and opportunities faced by researchers in the field and the industrial-scale production and economic aspects of these materials. The structure is organized to first introduce the fundamental aspects of CNOs and then progressively dive into specific applications and future prospects. It is intended for researchers, engineers, and academics interested in nanotechnology and nanocomposites, serving as a vital resource for understanding the evolving landscape of CNO nanocomposites and their wide-ranging applications in modern science and technology.• Provides a comprehensive exploration of carbon nano-onion and their nanocomposites with extensive coverage of synthesis, properties, and applications• Offers a detailed analysis of nanohybrid categories with various matrices• Highlights the technological applications of carbon nano-onion nanocomposites spanning multiple industries related to environment/sustainability, energy/electronics, corrosion/radiation protection, health, and biodegradation• Examines the future status and challenging industrial perspectives of carbon nano-onion nanocomposites
Pages
300 pages
Collection
n.c
Parution
2026-01-21
Marque
Elsevier
EAN papier
9780443450181
EAN EPUB SANS DRM
9780443450198

Prix
205,71 €

Prof. Dr. Ayesha Kausar is affiliated with National Centre for Physics, Islamabad, Pakistan. Her current research interests include design, fabrication, characterization, and exploration of structure-property relationships and potential prospects of nanocomposites, polymeric composites/nanocomposites, nanoparticles/polymeric nanoparticles, quantum dots, nanocarbons (graphene, carbon nanotube, nanodiamond, fullerene, etc.), inorganics/hybrid materials, nanofibers, nano-foam architectures, etc. Dr. Kausar's contributions to nano/materials science and technology fields include > 680 scientific publications in international peer-reviewed journals. Till now, she has contributed 10 Elsevier authored monographs as (i) "Multifunctional Carbon Nano-Onions Based Nanocomposites: Fundamentals, Design and Applications, 2026; (ii) "Graphene Quantum Dots and Their Derived Nanocomposites: Fundamentals and Applications, 2025; (iii) "Three-Dimensional Graphene Nanocomposites: Design, Characteristics, and Technical Potential, 2025; (iv) "Polymer/Nanodiamond Nanocomposites: Fundamentals, Properties and Applications 2024; (v) "Shape Memory Polymer-Derived Nanocomposites: Materials, Properties, and Applications, 2024; (vi) "Polymer/Fullerene Nanocomposites: Design and Applications 2023; (vii) "Polymeric Nanocomposites with Carbonaceous Nanofillers for Aerospace Applications 2022; (viii) "Graphene to Polymer/Graphene Nanocomposites: Emerging Research and Opportunities 2021; (x) "Conducting Polymer-Based Nanocomposites: Fundamentals and Applications 2021; (ix) "Electrical Conductivity in Polymer-Based Composites: Experiments, Modelling, and Applications 2018. Moreover, she contributed book chapters to > 150 international Books and Encyclopaedias. Her name has been listed in the world's Top 2% of scientists in the field of materials science & technology/nanotechnology in surveys conducted by Stanford University to recognize, in recent years.

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