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Facile preparation of mouldable polyvinyl alcohol-borax hydrogels reinforced by well-dispersed cellulose nanoparticles: physical, viscoelastic and mechanical properties

机译:分散良好的纤维素纳米颗粒增强的可模塑聚乙烯醇-硼砂水凝胶的简便制备:物理,粘弹性和机械性能

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摘要

Cellulose nanoparticle (CNP) reinforced polyvinyl alcohol-borax (PB) hydrogels were prepared through a facile approach in an aqueous medium. The effects of particle size, aspect ratio, crystal structure, and crystallinity of CNPs on the density, water content, optical transmittance and compression property of the hydrogels were investigated. The obtained stiff, high-water-capacity (*96 %), low-density (*1.1 g/cm3), translucent hydrogels exhibited birefringence behavior. The compression and dynamic oscillation measurements confirmed the incorporation of well-dispersed CNPs to PB system significantly enhanced the compressive strength and viscoelasticity of the hydrogels. The compression stress of cellulose I nanofiber reinforced PB hydrogel was 21-fold higher compared to the neat PB hydrogel. Highly-crystalline CNPs not only tangled with polyvinyl alcohol chains though numerous hydrogen bonds, but formed chemically crosslinked complexes with borate ions as well, thus acting as multifunctional crosslinking agents and nanofillers to physically and chemically bridge the 3D network of the hydrogels.
机译:通过在水性介质中的简便方法制备了纤维素纳米颗粒(CNP)增强的聚乙烯醇-硼砂(PB)水凝胶。研究了CNP的粒径,纵横比,晶体结构和结晶度对水凝胶的密度,水含量,透光率和压缩性能的影响。所获得的坚硬,高水容量(* 96%),低密度(* 1.1g / cm3)的半透明水凝胶表现出双折射行为。压缩和动态振荡测量结果证实,将分散良好的CNP掺入PB系统中可显着提高水凝胶的压缩强度和粘弹性。纤维素I纳米纤维增强的PB水凝胶的压缩应力比纯PB水凝胶高21倍。高度结晶的CNP不仅通过许多氢键与聚乙烯醇链缠结,而且还与硼酸根离子形成了化学交联的络合物,因此充当了多功能交联剂和纳米填料,以物理和化学方式桥接水凝胶的3D网络。

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