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Cellulose-starch Hybrid Films Plasticized by Aqueous ZnCl2 Solution

机译:ZnCl2水溶液增塑的纤维素淀粉杂化膜

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摘要

Starch and cellulose are two typical natural polymers from plants that have similar chemical structures. The blending of these two biopolymers for materials development is an interesting topic, although how their molecular interactions could influence the conformation and properties of the resultant materials has not been studied extensively. Herein, the rheological properties of cellulose/starch/ZnCl2 solutions were studied, and the structures and properties of cellulose-starch hybrid films were characterized. The rheological study shows that compared with starch (containing mostly amylose), cellulose contributed more to the solution’s viscosity and has a stronger shear-thinning behavior. A comparison between the experimental and calculated zero-shear-rate viscosities indicates that compact complexes (interfacial interactions) formed between cellulose and starch with ≤50 wt % cellulose content, whereas a loose structure (phase separation) existed with ≥70 wt % cellulose content. For starch-rich hybrid films prepared by compression molding, less than 7 wt % of cellulose was found to improve the mechanical properties despite the reduced crystallinity of the starch; for cellulose-rich hybrid films, a higher content of starch reduced the material properties, although the chemical interactions were not apparently influenced. It is concluded that the mechanical properties of biopolymer films were mainly affected by the structural conformation, as indicated by the rheological results.
机译:淀粉和纤维素是来自植物的具有相似化学结构的两种典型的天然聚合物。尽管尚未广泛研究如何将这两种生物聚合物共混用于材料开发,但是它们的分子相互作用如何影响所得材料的构象和性能。在本文中,研究了纤维素/淀粉/ ZnCl2溶液的流变性能,并表征了纤维素-淀粉杂化膜的结构和性能。流变学研究表明,与淀粉(主要包含直链淀粉)相比,纤维素对溶液的粘度贡献更大,并且具有更强的剪切稀化行为。实验和计算的零剪切速率粘度之间的比较表明,纤维素与淀粉之间形成紧密复合物(界面相互作用),纤维素含量≤50wt%,而纤维素≥70wt%时存在疏松结构(相分离)。 。对于通过压模法制备的富含淀粉的杂化膜,尽管降低了淀粉的结晶度,但是发现少于7wt%的纤维素改善了机械性能;然而,在本发明的实施例中,纤维素的杂化膜的淀粉含量较低。对于富含纤维素的杂化膜,较高的淀粉含量会降低材料性能,尽管化学相互作用显然没有受到影响。结论是,流变学结果表明,生物聚合物薄膜的机械性能主要受结构构象的影响。

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