The structure of celluloses

Author:

Wada Masahisa,Nishiyama Yoshiharu,Chanzy Henri,Forsyth Trevor,Langan Paul

Abstract

X-ray and neutron fiber diffraction has been used to study cellulose as it is converted from its naturally occurring crystal phase, cellulose I, to an activated crystal phase, cellulose IIII, by ammonia treatment. The detailed crystal structures determined for cellulose Iβ, an intermediate ammonia-cellulose I complex, and cellulose IIII, reveal a structural transition pathway: hydrogen bonded sheets of chains in cellulose Iβ slip with respect to each other to accommodate the penetrating ammonia guest molecules in the intermediate complex. On evaporation of ammonia from the intermediate complex, there is a relative small change in chain packing as an inter-sheet ammonia bridge is replaced by an inter-sheet hydrogen bond in cellulose IIII. When cellulose IIII is heated it converts back to cellulose Iβ. Both ammonia-cellulose I and cellulose IIII have extended chains of cooperative hydrogen bonds in relatively open crystal structures that may add to their susceptibility to rapid change.

Publisher

Cambridge University Press (CUP)

Subject

Condensed Matter Physics,Instrumentation,General Materials Science,Radiation

Reference15 articles.

1. Modeling diffraction patterns from textured polycrystalline samples;Nishiyama;Fibre Diffr. Rev.,2000

2. Activation of crystalline cellulose to cellulose IIII results in efficient hydrolysis by cellobiohydrolase

3. X-ray Structure of Mercerized Cellulose II at 1 Å Resolution

4. A Revised Structure and Hydrogen-Bonding System in Cellulose II from a Neutron Fiber Diffraction Analysis

5. Sheldrick G. M. (1997). SHELX-97, Program for the Refinement of Single-Crystal Diffraction Data (Computer Software), Georg–August University of Göttingen, Göttingen, Germany.

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