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Three-Dimensional Graphene Nanocomposites: Design, Characteristics, and Technical Potential

by Ayesha Kausar
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Current price ₹11,100.00
Original price ₹18,500.00
Original price ₹18,500.00
Original price ₹18,500.00
(-40%)
₹11,100.00
Current price ₹11,100.00

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Book cover type: Paperback
  • ISBN13: 9780443302152
  • Binding: Paperback
  • Subject: N/A
  • Publisher: Elsevier
  • Publisher Imprint: Elsevier
  • Publication Date:
  • Pages: 280
  • Original Price: USD 200.0
  • Language: English
  • Edition: N/A
  • Item Weight: 586 grams
  • BISAC Subject(s): Materials Science / General

Three-Dimensional Graphene Nanocomposites: Design, Characteristics, and Potential construes three-dimensional graphene and derived nanocomposites as a significant contribution towards progressive nanoscience/technological grounds. Staggering structural, morphological, conducting, mechanical, thermal, biological, and other vital characteristics of three-dimensional graphene are perceived to be essential to form competent three-dimensional graphene-based nanocomposites. The research on these high-tech nanocomposites has attained immense interest owing to its well-organized physical aspects conducting state-of-the-art systems and leading-edge applications from energy/environment to biomedical meadows. Similarly, three-dimensional graphene-based nanocomposites have interested academic/industrial research due to their high performance, characteristics, and technical potential.

This volume states widespread information and state-of-the-art of three-dimensional graphene nanocomposites. A systematic coverage on structure, design, features, processing, and relevance of three-dimensional graphene nanocomposites with inorganic nanoparticles (metal, metal oxide, MOF, etc.) and polymeric matrices (thermoplastics, thermosets, rubbery, and conjugating) have been specified. Application arenas of three-dimensional graphene reinforced nanocomposites have been elucidated for energy storage/conversion devices (supercapacitors, lithium-ion batteries, solar cells, fuel cells), radiation protection, clean environment (water/gas purification, gas sensing), and biomedical (tissue scaffolds, biosensing, drug delivery) stadia. Above and beyond, this book opinions on industrial, commercial, economic, and future sustainability facets of three-dimensional graphene derived nanocomposites.

Kausar, Ayesha: -

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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