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由低、高分子量双分散聚合物溶液混合物制备的纯壳聚糖生物医学纺织纤维:微观结构-力学性能关系的研究。

Pure Chitosan Biomedical Textile Fibers from Mixtures of Low- and High-Molecular Weight Bidisperse Polymer Solutions: Processing and Understanding of Microstructure-Mechanical Properties' Relationship.

机构信息

Laboratory for Bioinspired Materials BMBT, Institute of Microsystems Engineering IMTEK, University of Freiburg, 79110 Freiburg, Germany.

Freiburg Materials Research Center FMF, University of Freiburg, 79104 Freiburg, Germany.

出版信息

Int J Mol Sci. 2022 Apr 26;23(9):4767. doi: 10.3390/ijms23094767.

Abstract

Natural polymers, as extracted from biomass, may exhibit large macromolecular polydispersity. We investigated the impact of low molar mass chitosan (LMW, DP~115) on the properties of chitosan fibers obtained by wet spinning of chitosan solutions with bimodal distributions of molar masses. The fiber crystallinity index () was assessed by synchrotron X-ray diffraction and the mechanical properties were obtained by uniaxial tensile tests. The LMW chitosan showed to slightly increase the crystallinity index in films which were initially processed from the bimodal molar mass chitosan solutions, as a result of increased molecular mobility and possible crystal nucleating effects. Nevertheless, the remained almost constant or slightly decreased in stretched fibers at increasing content of LMW chitosan in the bidisperse chitosan collodion. The ultimate mechanical properties of fibers were altered by the addition of LMW chitosan as a result of a decrease of entanglement density and chain orientation in the solid state. An increase of crystallinity might not be expected from LMW chitosan with a still relatively high degree of polymerization (DPw ≥ 115). Instead, different nucleation agents-either smaller molecules or nanoparticles-should be used to improve the mechanical properties of chitosan fibers for textile applications.

摘要

天然聚合物,如从生物质中提取的,可能表现出较大的高分子多分散性。我们研究了低摩尔质量壳聚糖(LMW,DP~115)对通过具有双峰分子量分布的壳聚糖溶液湿法纺丝获得的壳聚糖纤维性能的影响。利用同步加速器 X 射线衍射评估纤维结晶度指数(Ic),并通过单轴拉伸试验获得力学性能。结果表明,低分子量壳聚糖略微增加了初始由双峰分子量壳聚糖溶液加工的薄膜的结晶度指数,这是由于分子流动性增加和可能的晶体成核效应。然而,在双分散壳聚糖溶胶中添加 LMW 壳聚糖时,在拉伸纤维中保持不变或略有降低。由于在固态下缠结密度和链取向降低,添加 LMW 壳聚糖会改变纤维的最终机械性能。结晶度的增加可能不会出现在相对聚合度(DPw≥115)仍然较高的低分子量壳聚糖中。相反,应该使用不同的成核剂(小分子或纳米粒子)来提高壳聚糖纤维的机械性能,以用于纺织应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b29c/9105658/5432c6695812/ijms-23-04767-g002.jpg

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