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用于人体运动监测的柔性传感器的双重感应、可拉伸、耐疲劳、粘附和导电水凝胶。

Dual-Sensing, Stretchable, Fatigue-Resistant, Adhesive, and Conductive Hydrogels Used as Flexible Sensors for Human Motion Monitoring.

机构信息

School of Chemistry and Chemical Engineering, Shandong University of Technology, Zibo 255000, P. R. China.

出版信息

Langmuir. 2022 Jun 7;38(22):7013-7023. doi: 10.1021/acs.langmuir.2c00647. Epub 2022 May 25.

Abstract

Hydrogel-based sensors serve as an ideal platform for developing personalized wearable electronics due to their high flexibility and conformability. However, the weak stretchability and inferior conductivity of hydrogels have severely restricted their large-scale application. Herein, a natural polymer-based conductive hydrogel integrated with favorable mechanical properties, good adhesive performance, and excellent fatigue resistance was fabricated via interpenetrating tannic acid (TA) into a chitosan (CS) cross-linked network in an acidic aqueous solution. The hydrogel was composed of a regular hierarchical porous structure, which was built by the hydrogen bonding between TA and CS. In addition, the hydrogels exhibited adjustable mechanical properties (maximum yield stress of 7000 Pa) and good stretchability (strain up to 320%). Benefiting from the abundant catechol groups of TA, the proposed hydrogels could repeatedly adhere to various material surfaces and could be easily peeled off without residue. Moreover, the hydrogel exhibited stable conductivity, high stretching sensitivity (gauge factor of 2.956), rapid response time (930 ms), and excellent durability (>300 cycles), which can be assembled as a strain sensor to attach to the human body for precise monitoring of human exercise behavior, distinguishing physiological signals, and recognizing speech. Furthermore, the prepared hydrogels also exhibited stable sensing performance to temperature. As a result, the hydrogels exhibited dual sensory performance for both temperature and strain deformation. It is anticipated that the incorporation of strain sensors and thermal sensors will provide theoretical guidance for developing multifunctional conductive hydrogels and pave a way for the versatile application of hydrogel-based flexible sensors in wearable devices and soft actuators.

摘要

水凝胶基传感器因其高柔韧性和贴合性而成为开发个性化可穿戴电子产品的理想平台。然而,水凝胶的拉伸强度弱和导电性差严重限制了其大规模应用。在此,通过在酸性水溶液中将单宁酸(TA)渗透到壳聚糖(CS)交联网络中,制备了一种具有良好机械性能、良好的粘附性能和优异的耐疲劳性的基于天然聚合物的导电水凝胶。该水凝胶由 TA 和 CS 之间的氢键形成的规则分级多孔结构组成。此外,水凝胶表现出可调节的机械性能(最大屈服应力为 7000 Pa)和良好的拉伸性(应变高达 320%)。得益于 TA 丰富的邻苯二酚基团,所提出的水凝胶可以反复粘附在各种材料表面上,并且可以轻松剥离而无残留。此外,水凝胶表现出稳定的导电性、高拉伸灵敏度(应变系数为 2.956)、快速响应时间(930 ms)和出色的耐用性(>300 次循环),可以组装成应变传感器,贴附在人体上,用于精确监测人体运动行为、区分生理信号和识别语音。此外,所制备的水凝胶还表现出对温度的稳定传感性能。因此,水凝胶表现出对温度和应变变形的双重传感性能。预计应变传感器和热传感器的结合将为开发多功能导电水凝胶提供理论指导,并为基于水凝胶的柔性传感器在可穿戴设备和软致动器中的多功能应用铺平道路。

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