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Facile fabrication of tough photocrosslinked polyvinyl alcohol hydrogels with cellulose nanofibrils reinforcement

机译:纤维素纳米纤维增强纤维素加固强硬光散粘的聚乙烯醇水凝胶的舒适性

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摘要

A high-strength polyvinyl alcohol (PVA) hydrogel was prepared via a facile photocrosslinked polymerization with cellulose nanofibrils (CNF) reinforcement. The mechanism of CNF reinforcement was studied systematically. The hydroxyl groups in the surface of CNF generate hydrogen bonds with the pendant hydroxyl of PVA chains, which promotes the interaction of already chemical crosslinked PVA chains and increases the crystallinity of the resultant PVA-MA/CNF hydrogel. By optimizing the CNF incorporation content to the PVA-MA/CNF hydrogel, a compressive fracture stress of 490 kPa was obtained, which is higher than that of previously reported nanocellulose reinforced PVA hydrogels. And more importantly, this gel exhibits excellent cyclic compressive performance. This work provides a novel method to improve the mechanical strength of PVA hydrogel which is beneficial for its application in tissue engineering field.
机译:通过纤维素纳米纤维(CNF)增强,通过容易的光菌瘤聚合制备高强度聚乙烯醇(PVA)水凝胶。 系统地研究了CNF加固机制。 CNF表面中的羟基与PVA链的悬浮液产生氢键,这促进了已经化学交联PVA链的相互作用,并增加了所得PVA-MA / CNF水凝胶的结晶度。 通过优化CNF掺入含量至PVA-MA / CNF水凝胶,获得490kPa的压缩断裂应力,其高于先前报道的纳米纤维素增强PVA水凝胶的压缩断裂应力。 更重要的是,这种凝胶具有出色的循环压缩性能。 该工作提供了一种提高PVA水凝胶机械强度的新方法,这是有利于其在组织工程领域的应用。

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