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Titlebook: Crystalline Cellulose and Derivatives; Characterization and Peter Zugenmaier Book 2008 Springer-Verlag Berlin Heidelberg 2008 Charakterisie

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Achim Schmid,Pascal Siemsen,Ralf Götzeablished. The crystalline domains are of very limited size in cellulosics and these domains are arranged with noncrystalline materials in fibrils and fibers and predominantly determine the mechanical properties, such as tensile strength. The ratio of crystalline to total materials is termed the crys
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Morphology, line width of the (110) reflection and electron-microscopic observations. In this chapter we will not discuss in detail the size of domains and their aggregation that is the morphology and the structure of the fibers but rather will introduce some current models necessary for a discussion of proper
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1431-8563 shing structure–property relationships (tensile strength, sorption, solubility , etc.), chemical reactivity and derivatization as well as the composition of cell wall materials and the orientation of microfibri978-3-642-09319-7978-3-540-73934-0Series ISSN 1431-8563
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Achim Schmid,Pascal Siemsen,Ralf Götze. Powerful methods have been developed to study the placements of atoms in single crystals and have considerably increased our knowledge of biomacromolecules and their functioning, especially of enzymes, RNA, etc. However, these methods only work with appropriate experimental data, which are not alw
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Achim Schmid,Pascal Siemsen,Ralf Götzerecent years, trimers and tetramers have been studied and a larger structural data base is now available. These oligomers can be regarded as models for cellulose, and some extracted data as invariants. Such a data base is of great value in establishing starting models for cellulosics. The trimers an
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