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Tough, Swelling-Resistant, Self-Healing, and Adhesive Dual-Cross-Linked Hydrogels Based on Polymer-Tannic Acid Multiple Hydrogen Bonds

机译:基于聚合物 - 单宁酸多氢键的坚韧,抗胀,自愈,粘合双交联水凝胶

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摘要

We demonstrate a facile and universal strategy in the fabrication of dual-cross-linked (DC) single network hydrogels with high toughness, "nonswellability", rapid self-healing, and versatile adhesiveness based on polymer tannic acid (TA) multiple hydrogen bonds. Two widely used hydrogels, physically cross-linked poly(vinyl alcohol) and chemically cross linked polyacrylamide, have been transformed to TA-based DC hydrogels by dipping the corresponding aerogels into TA solution. The second cross-link via multiple polymer TA hydrogen bonds effectively suppresses the crack propagation, resulting in both DC gels with high mechanical strength. But these two TA-based DC hydrogels go through different deformation mechanisms during the stretching based on analyzing their stress strain curves using the Mooney Rivlin equation. Moreover, these DC hydrogels are swelling-resistant, with strong toughness, good self-recoverability, rapid self-healing, and versatile adhesiveness. This work provides a simple route to fabricate multifunctional DC hydrogels, hopefully promoting their applications as biomedical materials.
机译:我们在制备具有高韧性的双交联(DC)单一网络水凝胶中的容易和普遍的策略,基于聚合物单宁酸(TA)多氢键,“非韧性”,快速的自愈性和多功能粘合性。通过将相应的气凝胶浸入Ta溶液中,两种广泛使用的水凝胶,物理交联的聚(乙烯醇)和化学交联的聚丙烯酰胺,通过将相应的气凝胶浸入Ta溶液中转化为基于TA的DC水凝胶。通过多聚合物TA氢键的第二交联有效地抑制了裂缝繁殖,导致具有高机械强度的DC凝胶。但是基于TA的基于TA的DC水凝胶在使用Mooney Rivlin等式的分析它们的应力应变曲线的伸展期间通过不同的变形机制。此外,这些DC水凝胶是抗杆,具有良好的韧性,良好的自我恢复性,快速的自愈和多功能粘合性。这项工作提供了一种简单的途径来制造多功能直流水凝胶,希望促进其应用作为生物医学材料。

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