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Molecular interactions in bacterial cellulose composites studied by 1D FT-IR and dynamic 2D FT-IR spectroscopy

机译:一维FT-IR和动态2D FT-IR光谱研究细菌纤维素复合材料中的分子相互作用

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摘要

Specific strain-induced orientation and interactions in three Acetobacter cellulose composites: cellulose (C), cellulose/pectin (CP) and cellulose/xyloglucan (CXG) were characterized by FT-IR and dynamic 2D FT-IR spectroscopies. On the molecular level, the reorientation of the cellulose fibrils occurred in the direction of the applied mechanical strain. The cellulose-network reorientation depends on the composition of the matrix, including the water content, which lubricates the motion of macromolecules in the network. At the submolecular level, dynamic WD FT-IR data suggested that there was no interaction between cellulose and pectin in CP and that they responded independently to a small amplitude strain, while in CXG, cellulose and xyloglucan were uniformly strained along the sample length.
机译:通过FT-IR和动态二维FT-IR光谱对三种醋杆菌纤维素复合物中特定的应变诱导的取向和相互作用进行了表征:纤维素(C),纤维素/果胶(CP)和纤维素/木葡聚糖(CXG)。在分子水平上,纤维素原纤维的重新取向在施加的机械应变的方向上发生。纤维素网络的重新定向取决于基质的组成,包括水含量,该成分润滑了网络中大分子的运动。在亚分子水平上,动态WD FT-IR数据表明,纤维素和果胶在CP中不存在相互作用,并且它们对小振幅应变独立响应,而在CXG中,纤维素和木葡聚糖沿样品长度均匀地应变。

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