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Characterisation of the supramolecular structure of chemically and physically modified regenerated cellulosic fibres by means of high-resolution Carbon-13 solid-state NMR

机译:利用高分辨率的碳13固态NMR表征化学和物理改性的再生纤维素纤维的超分子结构

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Carbon-13 high-resolution solid-state NMR techniques have been invaluable in elucidating the structure of regenerated cellulosic materials. Studies of a range of fibres have shown systematic changes in chemical shifts, which can be related to the influences of physical processing or chemical modification. A constrained curve fitting method has been applied, where the C4 spectral envelope is represented as the sum of contributions from polymer in ordered, partially-ordered and disordered environments, associated with differing conformational arrangements of the cellulose hydroxymethyl and glycocidic bonds. The empirical gamma-gauche effect seems likely to provide the best rationalization for the relationship between C4 shifts and conformational order, taking into account the increased range of bond angles in disordered environments. The quantification of proportions of polymer units within different conformational groupings will provide new insights into the development of supramolecular texture. This will allow better appreciation of the relationships between fibre processing and ultimate fibre performance. (c) 2007 Elsevier Ltd. All rights reserved.
机译:碳13高分辨率固态NMR技术在阐明再生纤维素材料的结构方面具有不可估量的价值。对一系列纤维的研究表明,化学位移发生了系统性变化,这可能与物理加工或化学改性的影响有关。已应用约束曲线拟合方法,其中C4光谱包络表示为聚合物在有序,部分有序和无序的环境中与纤维素羟甲基和糖苷键的不同构象排列相关的聚合物贡献的总和。考虑到在无序环境中键角范围的增加,经验的伽马-戈谢效应似乎可以为C4位移与构象顺序之间的关系提供最佳的合理化。定量不同构象组中聚合物单元的比例将为超分子织构的发展提供新的见识。这样可以更好地理解纤维加工与最终纤维性能之间的关系。 (c)2007 Elsevier Ltd.保留所有权利。

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