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Twisting of Fibers Balancing the Gel–Sol Transition in Cellulose Aqueous Suspensions

机译:纤维扭曲在纤维素水悬浮液中平衡凝胶-溶胶转变

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摘要

Cellulose hydrogels and films are advantageous materials that are applied in modern industry and medicine. Cellulose hydrogels have a stable scaffold and never form films upon drying, while viscous cellulose hydrosols are liquids that could be used for film production. So, stabilizing either a gel or sol state in cellulose suspensions is a worthwhile challenge, significant for the practical applications. However, there is no theory describing the cellulose fibers’ behavior and processes underlying cellulose-gel-scaffold stabilizing. In this work, we provide a phenomenological mechanism explaining the transition between the stable-gel and shapeless-sol states in a cellulose suspension. We suppose that cellulose macromolecules and nanofibrils under strong dispersing treatment (such as sonication) partially untwist and dissociate, and then reassemble in a 3D scaffold having the individual elements twisted in the nodes. The latter leads to an exponential increase in friction forces between the fibers and to the corresponding fastening of the scaffold. We confirm our theory by the data on the circular dichroism of the cellulose suspensions, as well as by the direct scanning electron microscope (SEM) observations and theoretical assessments.
机译:纤维素水凝胶和薄膜是在现代工业和医学中应用的有利材料。纤维素水凝胶具有稳定的支架,干燥后不会形成膜,而粘性纤维素水溶胶是可用于膜生产的液体。因此,稳定纤维素悬浮液中的凝胶或溶胶状态是一项值得挑战,对实际应用而言意义重大。但是,尚无理论来描述纤维素纤维的行为和纤维素-凝胶-支架稳定过程的基础。在这项工作中,我们提供了一种现象学机理,解释了纤维素悬浮液中稳定凝胶状态和无形溶胶状态之间的过渡。我们假设纤维素大分子和纳米原纤维在强分散处理(例如超声处理)下部分解捻并解离,然后在3D支架中重新组装,单个元素在节点中扭曲。后者导致纤维之间的摩擦力成指数增加,并导致支架的相应固定。我们通过有关纤维素悬浮液圆二色性的数据以及直接扫描电子显微镜(SEM)的观察结果和理论评估来证实我们的理论。

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