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首页> 外文期刊>Macromolecular materials and engineering >A Facile Strategy for Preparing Tough, Self‐Healing Double‐Network Hyaluronic Acid Hydrogels Inspired by Mussel Cuticles
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A Facile Strategy for Preparing Tough, Self‐Healing Double‐Network Hyaluronic Acid Hydrogels Inspired by Mussel Cuticles

机译:灵巧的策略准备艰难,自我疗愈应承担的双网络透明质酸水凝胶受贻贝角质层

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摘要

Abstract Compared with hydrogel‐like biological tissues such as cartilage, muscles, and blood vessels, current hyaluronic acid hydrogels often suffer from poor toughness and limited self‐healing properties. Herein, a facile and generalizable strategy inspired by mussel cuticles is presented to fabricate tough and self‐healing double‐network hyaluronic acid hydrogels. These hydrogels are composed of ductile, reversible Fe 3+ ‐catechol interaction primary networks, and secondarily formed brittle, irreversible covalent networks. Based on this design strategy, the hyaluronic acid hydrogels are demonstrated to exhibit reinforced mechanical strength while maintaining a rapid self‐healing property. In addition, by simply regulating pH or UV irradiation time, the mechanical properties of the hydrogels can be regulated conveniently through variations between the primary and secondary networks.
机译:相比水凝胶类生物组织等软骨、肌肉和血管,电流透明质酸水凝胶经常遭受贫困韧性和有限的自我治疗功效。在此,简单和可归纳的策略提出了受贻贝角质层制造困难和自我治疗双网络透明质酸水凝胶。组成的韧性、可逆的铁 3 + 儿茶酚交互主网络,和其次易碎,形成不可逆的共价网络。透明质酸水凝胶演示了表现出增强机械强度保持一个快速自我疗愈的财产。此外,通过调节pH值或紫外线辐照时间的机械性能水凝胶可以调节方便通过初级和之间的差异二级网络。

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