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Tough Stretchable Physically-Cross-linked Electrospun Hydrogel Fiber Mats

机译:坚韧的可拉伸物理交联电纺水凝胶纤维垫

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Nature uses supramolecular interactions and hierarchical structures to produce water-rich materials with combinations of properties that are challenging to obtain in synthetic systems. Here, we demonstrate hierarchical supramolecular hydrogels from electrospun, self-associated copolymers with unprecedented elongation and toughness for high porosity hydrogels. Hydrophobic association of perfluoronated comonomers provides the physical cross-links for these hydrogels based on copolymers of dimethyl acrylamide and 2-(N-ethylperfluorooctane sulfonamido)ethyl methacrylate (FOSM). Intriguingly, the hydrogel fiber mats show an enhancement in toughness in comparison to compression molded bulk hydrogels. This difference is attributed to the size distribution of the hydrophobic aggregates where narrowing the distribution in the electrospun material enhances the toughness of the hydrogel. These hydrogel fiber mats exhibit extensibility more than double that of the bulk hydrogel and a comparable modulus despite the porosity of the fiber mat leading to >25 wt % increase in water content.
机译:大自然使用超分子相互作用和层次结构来生产富含水的材料,这些材料的性能组合在合成系统中难以获得。在这里,我们演示了由静电纺丝,自缔合共聚物制成的分级超分子水凝胶,具有高孔隙率水凝胶前所未有的伸长率和韧性。基于二甲基丙烯酰胺和甲基丙烯酸2-(N-乙基全氟辛烷磺酰胺基)乙基丙烯酸酯(FOSM)的共聚物,全氟共聚单体的疏水缔合为这些水凝胶提供了物理交联。有趣的是,与压制成型的块状水凝胶相比,水凝胶纤维垫的韧性有所提高。该差异归因于疏水性聚集体的尺寸分布,其中使电纺丝材料中的分布变窄增强了水凝胶的韧性。尽管纤维垫的孔隙率导致水含量增加> 25重量%,但是这些水凝胶纤维垫表现出的伸长率是本体水凝胶的两倍以上,并且具有相当的模量。

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