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用于高性能应变传感器的自愈合、自粘性、可拉伸且柔韧的导电水凝胶。

Self-healing, self-adhesive, stretchable and flexible conductive hydrogels for high-performance strain sensors.

作者信息

Li Ruirui, Ren Jie, Li Meng, Zhang Minmin, Li Yan, Yang Wu

机构信息

Chemistry & Chemical Engineering College, Northwest Normal University, Key Lab of Polymer Materials of Ministry of Education of Ecological Environment, Key Lab of Bioelectrochemistry & Environmental Analysis of Gansu, Lanzhou, 730070, P. R. China.

出版信息

Soft Matter. 2023 Aug 2;19(30):5723-5736. doi: 10.1039/d3sm00581j.

Abstract

Conductive hydrogels have been widely studied for their potential application as wearable sensors due to their flexibility and biocompatibility. However, the simultaneous incorporation of excellent stretchability, toughness, conductivity, self-healing, and adhesion a simple method remains a great challenge. Herein, a multifunctional hydrogel with self-adhesion, self-healing, conductivity, and mechanical properties was fabricated by ionic cross-linking of chitosan (CS), the acrylic acid (AA) polymer, and tea polyphenols (TPs) in the presence of graphitized carbon nanotubes (CNTs) in this work. The resultant hydrogel has unique self-healing properties (94.11% for strain self-healing and 90.60% for stress self-healing) and mechanical properties. The fracture stress was 0.075 MPa when the strain was 1184%, and the toughness reached 0.48 MJ m. The synergistic effect of free ions and CNTs endows the hydrogel with an excellent electrical conductivity (6.67 S m). Moreover, the hydrogel can adhere to various organic and inorganic materials. It exhibits repeatable self-adhesion to human skin and can be peeled off completely without any residual, irritation or allergic reactions. Additionally, the hydrogel also has good strain sensitivity and exhibits stable output signals in motion monitoring of the human body as a biosensor. Therefore, this work provides a new prospect for the design of multifunctional hydrogels for their potential applications in wearable biosensors.

摘要

由于其柔韧性和生物相容性,导电水凝胶作为可穿戴传感器的潜在应用已得到广泛研究。然而,通过一种简单的方法同时实现优异的拉伸性、韧性、导电性、自愈合性和粘附性仍然是一个巨大的挑战。在这项工作中,通过壳聚糖(CS)、丙烯酸(AA)聚合物和茶多酚(TPs)在石墨化碳纳米管(CNTs)存在下的离子交联制备了一种具有自粘附、自愈合、导电性和机械性能的多功能水凝胶。所得水凝胶具有独特的自愈合性能(应变自愈合率为94.11%,应力自愈合率为90.60%)和机械性能。应变达到1184%时,断裂应力为0.075MPa,韧性达到0.48MJ/m。自由离子和碳纳米管的协同作用赋予水凝胶优异的导电性(6.67S/m)。此外,该水凝胶可以粘附到各种有机和无机材料上。它对人体皮肤表现出可重复的自粘附性,并且可以完全剥离而没有任何残留、刺激或过敏反应。此外,该水凝胶还具有良好的应变敏感性,作为生物传感器在人体运动监测中表现出稳定的输出信号。因此,这项工作为多功能水凝胶在可穿戴生物传感器中的潜在应用设计提供了新的前景。

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