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On the Race for More Stretchable and Tough Hydrogels

机译:在争取更多可拉伸和坚韧水凝胶的竞赛中

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Hydrogels are tridimensional networks that are able to retain important amounts of water. These soft materials can be obtained through self-assembling processes involving either hydrophilic molecules or polymers, allowing the formation of the corresponding covalently and physically cross-linked networks. Although the applicability of hydrogels in biomedicine has been exponentially growing due to their biocompatibility and different responses to stimuli, these materials have exhibited the particular feature of poor mechanical strength, and consequently, are brittle materials with low deformation. Due to this reason, a race has started to obtain more stretchable and tough hydrogels through different approaches. Within this context, this review article describes the most representative strategies and examples involving synthetic polymers with potential for biomedical applications.
机译:水凝胶是三维网络,能够保留大量的水。这些软材料可以通过涉及亲水分子或聚合物的自组装过程获得,从而可以形成相应的共价和物理交联网络。尽管由于其生物相容性和对刺激的不同反应,水凝胶在生物医学中的适用性呈指数增长,但是这些材料表现出机械强度差的特殊特征,因此,它们是具有低变形的脆性材料。由于这个原因,一场比赛已经开始通过不同的方法获得更多可拉伸和坚韧的水凝胶。在此背景下,本文将介绍最具代表性的策略和示例,这些策略和示例涉及具有生物医学应用潜力的合成聚合物。

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