Functionalized Graphene Nanocomposites and their Derivatives: Synthesis, Processing and Applications

Functionalized Graphene Nanocomposites and their Derivatives: Synthesis, Processing and Applications

Jawaid, Mohammad
Bouhfid, Rachid
Kacem Qaiss, Abou el

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Graphene-based nanocomposites are one of the major advancement in polymer-based materials. The synthesis, nanoscale dimensions, high aspect ratio, mechanical, electrical and thermal properties of graphene and its derivative have all been major areas of research in the last decade. Nanocomposites are novel materials with significantly enhanced properties owing to the integration of small amount ( In recent years, several methods have been developed to produce graphene. The reduction of graphene derivatives, such as graphene oxide, shows potential for the cost-effective production of graphene sheets in the bulk quantities that are necessary for application to nanocomposites. The functionalization technique is critical in the creation of graphene nanocomposites. Functionalized Graphene and its Derivatives-based Nanocomposites explains how the functionalization technique is used to create graphene nanocomposites, and explores its current uses in industrial applications. This is an important reference resource for those working in the fields of materials processing and characterization, wanting to learn more about graphene nanocomposites and their applications. Explains how graphene is functionalized and used in the fabrication of nanocomposites for a range of applicationsExplores why the properties of functionalized graphene make it such a useful, versatile materialDescribes in detail the functionalization process, for utilization in graphene INDICE: 1. Chemical preparation and functionalization techniques of graphene and graphene oxide2. Functionalized Graphene by radical reactions and electrophilic addition and polymeric matrices based nanocomposites: Mechanical and thermal properties3. Functionalized graphene and thermoset matrices based nanocomposites: Mechanical and thermal properties4. Functionalized Graphene nanocomposites in Air Filtration applications5. Functionalized Graphene nanocomposites for water treatment6. Functionalized Graphene based Nanocomposites for Biomedical applications: drug delivery7. Rheological properties of functionalized graphene and polymeric matrices based nanocomposites 8. Functionalized graphene reinforced foam polymeric matrices: processing and applications 9. Functionalized graphene aerogel: Structural and morphological properties and applications 10. Comparison between Functionalized graphene and carbon nanotube: Effect of morphology and surface group on mechanical, electrical and thermal properties of nanocomposites11. Functionalized Graphene and Montmorillonite based Hybrid nanocomposites: effect of hybridization on mechanical, thermal and rheological properties12. Functionalized Graphene based nanocomposites for Energy applications13. Functionalized Graphene Nanocomposites: effect on structural and functional applications14. Electronic applications of Functionalized Graphene Nanocomposites15. Effects of specific surface area, defects, presence of porous, and type of functional groups16. Metal oxide-Graphene and Metal-graphene nanocomposites for Energy and Environment17. Functionalized Graphene Nanocomposite in Gas sensing18. Functionalized Graphene for Chemical sensing applications

  • ISBN: 978-0-12-814548-7
  • Editorial: Elsevier
  • Encuadernacion: Rústica
  • Páginas: 500
  • Fecha Publicación: 01/11/2018
  • Nº Volúmenes: 1
  • Idioma: Inglés