Crystalline Cellulose and Derivatives: Characterization and Structures Softcover reprint of hardcover 1st ed. 2008 Edition

Crystalline Cellulose and Derivatives: Characterization and Structures Softcover reprint of hardcover 1st ed. 2008 Edition book cover

Crystalline Cellulose and Derivatives: Characterization and Structures Softcover reprint of hardcover 1st ed. 2008 Edition

Author(s): Peter Zugenmaier (Author)

  • Publisher: Springer
  • Publication Date: 17 Nov. 2010
  • Edition: Softcover reprint of hardcover 1st ed. 2008
  • Language: English
  • Print length: 295 pages
  • ISBN-10: 3642093191
  • ISBN-13: 9783642093197

Book Description

Cellulose as an abundant renewable material has stimulated basic and applied research that has resulted in significant progress in polymer science. This book discusses reliable crystal structures of all cellulose polymorphs and cellulose derivatives. Models are represented in graphs, together with a collection of geometrical data and the atomic coordinates. The author briefly introduces fiber diffraction, computer-aided modeling and spectroscopic investigations, as well as the necessary molecular data from oligosaccharides as a basis for structure evaluations. X-ray diffraction patterns and spectroscopic diagrams are presented as references to characterize cellulosic materials and to serve as fingerprint tools for the exploration of unknown specimens of cell walls and of industrially processed films and fibers as well as solid-state materials. This book is a concise guide for the materials and life sciences communities interested in cellulose and related materials.

Editorial Reviews

From the Back Cover

This book constitutes a valuable, concise and up-to-date guide for the materials and life science community interested in cellulose and related materials. Reliable crystal structures of all cellulose polymorphs and cellulose derivatives determined are critically reviewed and discussed. Models are represented in graphs together with a collection of geometrical data as well as the atomic coordinates for further use. The background for fiber diffraction, computer-aided modeling and spectroscopic investigations is briefly introduced and also included are the necessary molecular data from oligosaccharides as a basis for structure evaluations. X-ray diffraction patterns and spectroscopic diagrams are presented as references to characterize cellulosic materials and to serve as fingerprint tools for the exploration of unknown specimens of cell walls and of industrially processed films and fibers as well as solid-state materials.

Cellulose as an abundant renewable material has stimulated basic and applied research throughout the years, as addressed in a historical review, and has inspired significant progress in polymer science. In recent years cellulose has gained renewed importance as a raw material and still possesses high potential for future applications. Academia and industry may equally profit from this comprehensive survey.

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