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Super-tough and thermo-healable hydrogel - promising for shape-memory absorbent fiber

机译:超韧且可热修复的水凝胶-有望用于形状记忆吸收纤维

摘要

Recoverable hydrogels with high stretch and toughness have been synthesized by a one-step radical polymerization. They consist of covalently crosslinked polyacrylamide (PAAm) and ionically crosslinked carrageenan. Such double network (DN) hydrogels can be stretched beyond 20 times their initial length, and their fracture energy reached a high value of ∼9500 J m-2. By comparing hydrogel tensile properties at different temperatures, the contribution of ionic network to the toughness was quantitatively determined in percentage for the first time. The stretched hydrogels were completely healed by short treatment at a mild temperature. Through drying at stretch, they were also transformed into stiff absorbent fibers that still preserved their shape memory of wet state.
机译:通过一步式自由基聚合合成了具有高拉伸性和韧性的可回收水凝胶。它们由共价交联的聚丙烯酰胺(PAAm)和离子交联的角叉菜胶组成。这种双网络(DN)水凝胶可以拉伸超过其初始长度的20倍,其断裂能达到约9500 J m-2的高值。通过比较不同温度下的水凝胶拉伸性能,首次定量确定了离子网络对韧性的贡献。经拉伸的水凝胶在温和的温度下经过短时间的处理即可完全愈合。通过拉伸干燥,它们还转变为坚硬的吸收性纤维,该纤维仍保持其湿态的形状记忆。

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