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通过形成坚固的酰肼-过渡金属配位络合物来增强水凝胶

Toughening Hydrogels by Forming Robust Hydrazide-Transition Metal Coordination Complexes.

作者信息

Ju Huaqiang, Zhu Qing Li, Zuo Min, Liang Songmiao, Du Miao, Zheng Qiang, Wu Zi Liang

机构信息

Ministry of Education Key Laboratory of Macromolecular Synthesis and Functionalization, Department of Polymer Science and Engineering, Zhejiang University, Hangzhou, 310058, China.

Vontron Technology Co., Ltd., Guiyang, 550018, China.

出版信息

Chemistry. 2023 Jul 6;29(38):e202300969. doi: 10.1002/chem.202300969. Epub 2023 May 19.

Abstract

Energy dissipation based on dynamic fracture of metal ligands is an effective way to toughen hydrogels for specific applications in biomedical and engineering fields. Exploration of new kinds of metal-ligand coordinates with robust bonding strength is crucial for the facile synthesis of tough gels. Here a hydrogel toughening strategy based on the formation of robust coordination complexes between the hydrazide ligands and zinc ions is reported. The resultant hydrogels exhibit high strength and toughness at room temperature. Their mechanical properties show temperature dependence due to the dynamic nature of coordination bonds. In addition, the amine group of hydrazides in the gel matrix provides a reactive site for Schiff's base reaction, enabling surface modification without influence on overall mechanical performances of the gel. The hydrazide ligands are easy to synthesize and can coordinate very well with several transition metals. Such a metal-ligand coordination should be suitable to develop tough soft materials with versatile applications.

摘要

基于金属配体动态断裂的能量耗散是一种有效的方法,可用于增强水凝胶,以满足生物医学和工程领域特定应用的需求。探索具有强大键合强度的新型金属-配体配位对于简便合成坚韧凝胶至关重要。本文报道了一种基于酰肼配体与锌离子形成强大配位络合物的水凝胶增韧策略。所得水凝胶在室温下表现出高强度和韧性。由于配位键的动态性质,它们的力学性能表现出温度依赖性。此外,凝胶基质中酰肼的胺基为席夫碱反应提供了一个反应位点,使得表面改性不会影响凝胶的整体力学性能。酰肼配体易于合成,并且能与几种过渡金属很好地配位。这种金属-配体配位应该适合于开发具有广泛应用的坚韧软材料。

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