Structure and engineering of celluloses.

2区 化学 Q2 Chemistry
Serge Pérez, Daniel Samain
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引用次数: 156

Abstract

This chapter collates the developments and conclusions of many of the extensive studies that have been conducted on cellulose, with particular emphasis on the structural and morphological features while not ignoring the most recent results derived from the elucidation of unique biosynthetic pathways. The presentation of structural and morphological data gathered together in this chapter follows the historical development of our knowledge of the different structural levels of cellulose and its various organizational levels. These levels concern features such as chain conformation, chain polarity, chain association, crystal polarity, and microfibril structure and organization. This chapter provides some historical landmarks related to the evolution of concepts in the field of biopolymer science, which parallel the developments of novel methods for characterization of complex macromolecular structures. The elucidation of the different structural levels of organization opens the way to relating structure to function and properties. The chemical and biochemical methods that have been developed to dissolve and further modify cellulose chains are briefly covered. Particular emphasis is given to the facets of topochemistry and topoenzymology where the morphological features play a key role in determining unique physicochemical properties. A final chapter addresses what might be considered tomorrow's goal in amplifying the economic importance of cellulose in the context of sustainable development. Selected examples illustrate the types of result that can be obtained when cellulose fibers are no longer viewed as inert substrates, and when the polyhydroxyl nature of their surfaces, as well as their entire structural complexity, are taken into account.

纤维素的结构和工程。
本章整理了许多关于纤维素的广泛研究的进展和结论,特别强调了纤维素的结构和形态特征,同时也没有忽视最近从独特的生物合成途径的阐明中得到的结果。本章中收集的结构和形态数据的呈现遵循了我们对纤维素不同结构水平及其各种组织水平的知识的历史发展。这些级别涉及链构象、链极性、链结合、晶体极性和微纤维结构和组织等特征。本章提供了一些与生物聚合物科学领域概念演变相关的历史里程碑,这些概念与表征复杂大分子结构的新方法的发展平行。对组织的不同结构层次的阐明,开辟了将结构与功能和性质联系起来的道路。简要介绍了已开发的溶解和进一步修饰纤维素链的化学和生化方法。特别强调的是拓扑化学和拓扑酶学方面,其中形态特征在确定独特的物理化学性质中起关键作用。最后一章讨论了在可持续发展背景下扩大纤维素的经济重要性可能被认为是明天的目标。所选的例子说明了当纤维素纤维不再被视为惰性底物时,当考虑到其表面的多羟基性质以及其整个结构复杂性时,可以获得的结果类型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Advances in carbohydrate chemistry and biochemistry
Advances in carbohydrate chemistry and biochemistry 生物-生化与分子生物学
CiteScore
2.20
自引率
0.00%
发文量
0
期刊介绍: Advances in Carbohydrate Chemistry and Biochemistry has provided, since its inception in 1945, critical and informative articles written by research specialists that integrate the industrial, analytical, and technological aspects of biochemistry, organic chemistry, and instrumentation methodology to the study of carbohydrates. Its articles present a definitive interpretation of the current status and future trends in carbohydrate chemistry and biochemistry.
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