Polymeric materials from cellulose and its derivatives

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This book is based on doctoral research, portrays the various approaches of utilizing cellulose, in three parts. The first part is on utilizing cellulose fibers as reinforcing materials. It is focused on the effect of fiber treatment on material properties and their durability under biotic/abiotic conditions. It was purported that for various applications of natural fiber reinforced composites, the treatments on the fiber have to be optimized depending on their durability requirement. Then it discusses the possibilities of incorporating both nanoparticles and cellulose (micro)fiber in thermoplastics. The strategy of improving properties of starch matrix is also revealed by fiber- reinforcement and photo-induced-crosslinking. The second part is on utilizing cellulose esters and portrays the preparation and characterization of nanocomposites of clay and polyethylene-glycol- /lactide-grafted- cellulose esters. They are found to exhibit various structural morphology and mechanical properties depending on the preparation methodologies involved. Third part discusses the synthesis of nanoscale hydroxyapatite using a cellulose derivative.

Autorentext

Dr. PK Annamalai born (1979) in Tiruvannamalai, studied Chemistry in University of Madras, worked as research fellow in National Chemical Laboratory, obtained PhD in Chemistry from University of Pune, India. Currently he is postdoctoral fellow, in Université Montpellier II, France. He is interested in polymer and environmental chemistry.

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Weitere Informationen

  • Allgemeine Informationen
    • Sprache Englisch
    • Gewicht 358g
    • Untertitel Preparation, characterization and durability of their micro- and nano-composites.
    • Autor Pratheep Kumar Annamalai
    • Titel Polymeric materials from cellulose and its derivatives
    • Veröffentlichung 18.10.2010
    • ISBN 384335278X
    • Format Kartonierter Einband
    • EAN 9783843352789
    • Jahr 2010
    • Größe H220mm x B150mm x T15mm
    • Herausgeber LAP LAMBERT Academic Publishing
    • Anzahl Seiten 228
    • GTIN 09783843352789

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