首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Tough supramolecular hydrogels with excellent self-recovery behavior mediated by metal-coordination interaction
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Tough supramolecular hydrogels with excellent self-recovery behavior mediated by metal-coordination interaction

机译:坚韧的超分子水凝胶,具有由金属协调相互作用介导的优异的自我恢复行为

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摘要

Based on the strategy of dynamic metal-coordination for improving mechanical properties, a further ideal was taken to prepare the tough hydrogels with the combination of self-crosslinking monomer and metal-coordination complexes. Herein, a series of hydrogels of poly(acrylamide-co-acrylic acid-co-N-hydroxymethyl acrylamide) (P(AM-co-AAc-co-NMAM)) consisting the chemical crosslinking induced by NMAM units and the physical crosslinking derived from the coordination complexes of carboxyl-Fe3+ were prepared. The molecular structure was investigated with the ATR-FTIR, Raman and UV-vis spectra. These hydrogels with different water content of 57-93% possess good mechanical performances. The optimal hydrogels possess high tensile strength (8.56 MPa), prominent modulus (15.5 MPa), remarkable toughness (37.85 MJ/m(3)) and superb tearing energy (7062 J/m(2)). The tough hydrogels also display excellent self-recovery (95% toughness recovery within 50 min), pH-triggered healing, shape memory and plasticity abilities. These hydrogels having high strength and toughness may broaden range of potential applications in load-bearing soft actuators, flexible electronics, etc.
机译:基于用于改善机械性能的动态金属配位的策略,采用进一步的理想来制备坚固的水凝胶,其组合自交联单体和金属配位复合物。这里,聚(丙烯酰胺 - 共丙烯酸 - CO-羟甲基丙烯酰胺)的一系列水凝胶(P(AM-CO-AAC-CO-NMAM)),由NMAM单元和物理交联诱导的化学交联和衍生的物理交联从制备羧基-FE3 +的配位复合物。用ATR-FTIR,拉曼和UV-Vis光谱研究分子结构。不同水含量为57-93%的水凝胶具有良好的机械性能。最佳水凝胶具有高抗拉强度(8.56MPa),显着的模量(15.5MPa),显着的韧性(37.85mJ / m(3))和超级撕裂能量(7062 J / m(2))。坚韧的水凝胶还显示出优异的自我回收(50分钟内的95%韧性恢复),pH触发的愈合,形状记忆和可塑性能力。这些具有高强度和韧性的水凝胶可以宽大的潜在应用在承载轴承的软致动器,柔性电子器件等中。

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