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醛基修饰的纤维素基双重刺激响应型多重交联网络离子水凝胶用于离子皮肤和水生环境通信传感器。

Aldehyde modified cellulose-based dual stimuli responsive multiple cross-linked network ionic hydrogel toward ionic skin and aquatic environment communication sensors.

机构信息

Beijing Key Laboratory of Lignocellulosic Chemistry, Beijing Forestry University, College of Materials Science and Technology, Beijing 100083, China.

College of Mechanical and Electronic Engineering, Northwest A&F University, Yangling, Shaanxi 712100, China.

出版信息

Int J Biol Macromol. 2023 Dec 1;252:126533. doi: 10.1016/j.ijbiomac.2023.126533. Epub 2023 Aug 25.

Abstract

Recently, materials with complicated environmentally-sensitive abilities, high stretchability and excellent conductive sensitivity are interesting actuators in future applications. Herein, we fabricated a versatile and facile polyvinyl alcohol/polyacrylic acid/dialdehyde cellulose nanofibrils-Fe hydrogel integrated with programmable dual-shape memory properties, high mechanical strength, good recoverability, and heat-induced self-healing capability. Benefiting from the synergistic effect of hydrogen bonds and dual metal coordination bonds of cellulose-based dialdehyde and carboxyl with Feand then heating-freeze-thawing cycle treatment, the obtained hydrogel exhibited dual shape memory abilities, high tensile strain (up to 600 %), good self-recovery, and anti-fatigue properties. Moreover, the resultant hydrogel sensors showed revealed high strain sensitivity (gauge factor = 2.95) and satisfactory electrochemical performance; and such hydrogel-based sensor could be used as ionic skin to detect various human motions in real-time and barrier-free communication in the aquatic environment. The composite hydrogel with superior and versatile performances reported in this study could offer a great promise to be applied under extreme conditions as multifunctional sensors.

摘要

最近,具有复杂环境敏感能力、高拉伸性和优异导电灵敏度的材料是未来应用中有趣的致动器。本文制备了一种多功能且简便的聚乙烯醇/聚丙烯酸/醛基纤维素纳米纤维-铁水凝胶,该水凝胶具有可编程的双重形状记忆性能、高机械强度、良好的可恢复性和热诱导自修复能力。得益于基于纤维素的醛基和羧基与 Fe 的氢键和双重金属配位键的协同作用,然后进行无加热-冷冻-解冻循环处理,得到的水凝胶表现出双重形状记忆能力、高拉伸应变(高达 600%)、良好的自我恢复和抗疲劳性能。此外,所得水凝胶传感器表现出高应变灵敏度(应变系数=2.95)和令人满意的电化学性能;并且这种基于水凝胶的传感器可以用作离子皮肤,实时检测各种人体运动,并在水环境中进行无障碍通信。本研究中报道的具有优异和多功能性能的复合水凝胶有望作为多功能传感器在极端条件下应用。

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