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Formation of high strength double-network gels from cellulose nanofiber/polyacrylamide via NaOH gelation treatment

机译:通过NaOH凝胶处理从纤维素纳米纤维/聚丙烯酰胺形成高强度双网络凝胶

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摘要

Previously, we reported an efficient method to prepare tough hydrogels from cellulose nanofibers using an alkali treatment which had an nano-network structure. In this study, polyacrylamide/cellulose nanofiber (PAM/CNF) double-network (DN) gels were synthesized by simply using 15 wt% NaOH at room temperature. The compression properties and morphology of the gels were investigated. The main findings showed that the compressive stress of the PAM/CNF DN gel (CNF content of 5.7 wt%) was more than 15-fold higher than the pure PAM. When compared with the PAM/CNF gel prepared without alkali treatment, the mechanical properties of the PAM/CNF DN gel showed approximately 2-fold improvement. Analysis of this DN gel morphology further demonstrated that the CNF network (formed via 15 wt% NaOH treatment) was embedded in the PAM matrix, thereby increasing the strength of the hybrid gels. In summary, PAM/CNF DN gels with significantly improved mechanical properties could be prepared using a simple method, which provide great potential as bio-medical load-bearing gel materials.
机译:在此之前,我们报道了一种有效的方法,利用具有纳米网络结构的碱处理从纤维素纳米纤维制备坚韧的水凝胶。在本研究中,仅在室温下使用15 wt%NaOH合成了聚丙烯酰胺/纤维素纳米纤维(PAM/CNF)双网凝胶。研究了凝胶的压缩性能和形貌。主要结果表明,PAM/CNF DN凝胶(CNF含量为5.7 wt%)的压缩应力比纯PAM高15倍以上。与未经碱处理的PAM/CNF凝胶相比,PAM/CNF DN凝胶的力学性能提高了约2倍。对这种DN凝胶形态的分析进一步表明,CNF网络(通过15 wt%NaOH处理形成)嵌入到PAM基质中,从而增加了混合凝胶的强度。综上所述,通过简单的方法可以制备力学性能显著改善的PAM/CNF DN凝胶,这为生物医用承重凝胶材料提供了巨大的潜力。

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