Polymer Nanocomposites in Biomedical Engineering

Lieferzeit: Lieferbar innerhalb 14 Tagen

160,49 

Lecture Notes in Bioengineering

ISBN: 3030047407
ISBN 13: 9783030047405
Herausgeber: Kishor Kumar Sadasivuni/Deepalekshmi Ponnamma/Mariappan Rajan et al
Verlag: Springer Verlag GmbH
Umfang: x, 409 S.
Erscheinungsdatum: 30.01.2019
Auflage: 1/2019
Produktform: Gebunden/Hardback
Einband: Gebunden

Discusses the influence of preparation techniques on the generation of micro-, meso- and nanoscale fillers and the effect of filler size and dispersionPresents a thorough discussion of the physics, biology, chemistry and medicinal science behind polymer nanocomposites. Discusses recent research on polymer nanocomposites in Biomedical Engineering Presents a fundamental approach towards polymers and polymer composites

Artikelnummer: 5759103 Kategorie:

Beschreibung

This book presents a thorough discussion of the physics, biology, chemistry and medicinal science behind a new and important area of materials science and engineering: polymer nanocomposites. The tremendous opportunities of polymer nanocomposites in the biomedical field arise from their multitude of applications and their ability to satisfy the vastly different functional requirements for each of these applications. In the biomedical field, a polymer nanocomposite system must meet certain design and functional criteria, including biocompatibility, biodegradability, mechanical properties, and, in some cases, aesthetic demands. The content of this book builds on what has been learnt in elementary courses about synthesising polymers, different nanoparticles, polymer composites, biomedical requirements, uses of polymer nanocomposites in medicine as well as medical devices and the major mechanisms involved during each application. The impact of hybrid nanofillers and synergistic composite mixtures which are used extensively or show promising outcomes in the biomedical field are also discussed. These novel materials vary from inorganic/ceramic-reinforced nanocomposites for mechanical property improvement to peptide-based nanomaterials, with the chemistry designed to render the entire material biocompatible.

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