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首页> 外文期刊>European Polymer Journal >Hydroxyethyl cellulose-based self-healing hydrogels with enhanced mechanical properties via metal-ligand bond interactions
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Hydroxyethyl cellulose-based self-healing hydrogels with enhanced mechanical properties via metal-ligand bond interactions

机译:基于羟乙基纤维素的自愈合水凝胶,通过金属 - 配体键相互作用增强机械性能

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摘要

Self-healing hydrogels with robust mechanical properties is the primary objective of hydrogel materials. In this work, we report the synthesis of iron (III) containing hydroxyethyl cellulose based hydrogel (HEC/PAA-Fe3+) through dynamic metal-ligand (M-L) interactions with enhanced self-healing and mechanical properties. The decoration of ferric ions (Fe3+) in a physically cross-linked polymer network (HEC/PAA) introduces dynamic energy dissipative coordination bonds, which dramatically enhance the overall mechanical properties and self healing efficiency. The mechanical properties and self-healing ability can be optimized by a variety of parameters such as HEC, Fe3+ ions, and AA monomer concentration. The HEC/PAA-Fe3+ hydrogel exhibits high tensile strength (1.35 MPa), extensive fracture strain (1660%), high toughness (8.8 MJ m(-3)) and outstanding self-healing efficiency (87%) without any external intervention. We predict that this forthright dynamic bond archetype fabrication can improve the self-healing efficiency of hydrogels with enhanced mechanical properties.
机译:具有稳健力学性能的自愈水凝胶是水凝胶材料的主要目标。在这项工作中,我们通过动态金属 - 配体(M-L)相互作用来报告含有羟乙基纤维素基水凝胶(HEC / PAA-Fe3 +)的铁(III)的合成,其与增强的自愈合和机械性能相互作用。物理交联聚合物网络(HEC / PAA)中的铁离子(Fe3 +)的装饰引入了动态的能量耗散协调键,从而显着提高了整体机械性能和自我愈合效率。机械性能和自愈合能力可以通过各种参数进行优化,例如HEC,Fe3 +离子和AA单体浓度。 HEC / PAA-Fe3 +水凝胶具有高抗拉强度(1.35MPa),广泛的断裂菌株(1660%),高韧性(8.8MJ m(-3)),没有任何外部干预的突出的自我愈合效率(87%)。我们预测,这种直接动态粘合原型制造可以提高水凝胶的自愈合效率,具有增强的机械性能。

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