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首页> 外文期刊>Macromolecules >Dual Physically Cross-Linked Hydrogels with High Stretchability, Toughness, and Good Self-Recoverability
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Dual Physically Cross-Linked Hydrogels with High Stretchability, Toughness, and Good Self-Recoverability

机译:具有高拉伸性,韧性和良好的自恢复性的双重物理交联水凝胶

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摘要

The applications of hydrogels are severely limited by their weak mechanical properties. Despite recent significant progress in fabricating tough hydrogels, it is still a challenge to realize high stretchability, toughness, and recoverability at the same time in a hydrogel. Herein, we develop a novel class of dual physically cross-linked (DPC) hydrogels, which are triggered by clay nanosheets and iron ions (Fe3+) as cross-linkers. First, clay nanosheets induce the formation of the first cross-linking points through the interaction of hydrogen bonds with poly(acrylamide-co-acrylic acid) (PAm-co-Ac) chains. Then the secondary cross-linking points are introduced by ionic coordinates between Fe3+ and -COO- groups of PAm-co-Ac polymer chains. The mechanical properties of DPC hydrogels can be tuned readily by varying, preparation parameters such as clay concentration, Fe3+ concentration, and molar ratio of Ac/Am. More importantly, the optimal DPC hydrogels possess high tensile strength (ca. 3.5 MPa), large elongation (ca. 21 times), remarkable toughness (ca. 49 MJ m(-3)), and good self-recoverability (ca. 65% toughness recovery within 4 h without any external stimuli). Thus, this work provides a promising strategy for the fabrication of novel tough hydrogel containing a dual physical cross-linked network.
机译:水凝胶的应用由于其较弱的机械性能而受到严重限制。尽管最近在制备坚韧的水凝胶方面取得了重大进展,但是在水凝胶中同时实现高拉伸性,韧性和可恢复性仍然是一个挑战。本文中,我们开发了一类新型的双物理交联(DPC)水凝胶,其由粘土纳米片和铁离子(Fe3 +)作为交联剂引发。首先,粘土纳米片通过氢键与聚(丙烯酰胺-共丙烯酸)(PAm-co-Ac)链的相互作用诱导了第一个交联点的形成。然后通过PAm-co-Ac聚合物链的Fe3 +和-COO-基团之间的离子坐标引入次级交联点。 DPC水凝胶的机械性能可以通过改变制备参数(例如粘土浓度,Fe3 +浓度和Ac / Am的摩尔比)轻松进行调整。更重要的是,最佳的DPC水凝胶具有高拉伸强度(约3.5 MPa),伸长率(约21倍),出色的韧性(约49 MJ m(-3))和良好的自恢复性(约65)。 %韧性在4小时内恢复,没有任何外部刺激。因此,这项工作为制造包含双重物理交联网络的新型坚韧水凝胶提供了有希望的策略。

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