首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Investigation of the micro- and nano-scale architecture of cellulose hydrogels with plant cell wall polysaccharides: A combined USANS/SANS study
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Investigation of the micro- and nano-scale architecture of cellulose hydrogels with plant cell wall polysaccharides: A combined USANS/SANS study

机译:带有植物细胞壁多糖的纤维素水凝胶的微观和纳米尺度结构研究:USANS / SANS联合研究

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摘要

The structure of protiated, deuterated and composite cellulose hydrogels with plant cell wall (PCW) polysaccharides has been investigated by combined USANS/SANS experiments, complemented with spectroscopy and microscopy. The broad size range covered by the USANS/SANS experiments enabled the identification of cellulose architectural features in the cross-sectional and longitudinal directions. In the cross-sectional direction, cellulose ribbons are modelled as core-shell structures. Xyloglucan and mixed linkage glucans interfere with the cellulose crystallisation process, reducing the crystallinity and establishing cross-bridges between ribbons. However, only xyloglucan is able to establish strong interactions with the cellulose microfibrils, affecting the properties of the ribbons' core. Longitudinally, the ribbons are hypothesised to present a ca. 1.4-1.5 mm periodic twist with a crystallite length of ca. 140 -180 nm for the individual microfibrils. These results highlight the potential of USANS/SANS techniques to investigate the multi-scale architecture of cellulose hydrogels as well as the interaction mechanism between cellulose and PCW polysaccharides. (C) 2016 Elsevier Ltd. All rights reserved.
机译:通过结合USANS / SANS实验,结合光谱学和显微镜研究了具有植物细胞壁(PCW)多糖的多聚,氘化和复合纤维素水凝胶的结构。 USANS / SANS实验所覆盖的尺寸范围很广,从而可以在横截面和纵向方向上识别纤维素建筑特征。在横截面方向上,纤维素带被建模为核壳结构。木葡聚糖和混合的连接葡聚糖会干扰纤维素的结晶过程,降低结晶度并在条带之间建立交叉桥。但是,只有木葡聚糖能够与纤维素微纤维建立牢固的相互作用,从而影响色带芯的性能。纵向上,假设色带呈现约1。 1.4-1.5 mm的周期性扭曲,微晶长度为。各个微纤维为140 -180 nm。这些结果凸显了USANS / SANS技术在研究纤维素水凝胶的多尺度结构以及纤维素与PCW多糖之间相互作用机理方面的潜力。 (C)2016 Elsevier Ltd.保留所有权利。

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