School of Chemistry and Materials Science, Ludong University, Key Laboratory of High Performance and Functional Polymer in the Universities of Shandong Province, Collaborative Innovation Center of Shandong Province for High Performance Fibers and Their Composites, Yantai 264025, China.
J Mater Chem B. 2024 Jan 17;12(3):762-771. doi: 10.1039/d3tb02482b.
For hydrogel-based flexible sensors, it is a challenge to enhance the stability at sub-zero temperatures while maintaining good self-healing properties. Herein, an anti-freezing nanocomposite hydrogel with self-healing properties and conductivity was designed by introducing cellulose nanocrystals (CNCs) and phytic acid (PA). The CNCs were grafted with polypyrrole (PPy) by chemical oxidation, which were used as the nanoparticle reinforcement phase to reinforce the mechanical strength of hydrogels (851.8%). PA as a biomass material could form strong hydrogen bond interactions with HO molecules, endowing hydrogels with prominent anti-freezing properties. Based on the non-covalent interactions, the self-healing rate of the hydrogels reached 92.9% at -15 °C as the content of PA was 40.0 wt%. Hydrogel-based strain sensors displayed high sensitivity (GF = 0.75), rapid response time (350 ms), good conductivity (3.1 S m) and stability at -15 °C. Various human movements could be detected by using them, including small (smile and frown) and large changes (elbow and knee bending). This work provides a promising method for the development of flexible wearable sensors that work stably in frigid environments.
对于基于水凝胶的柔性传感器,在保持良好自修复性能的同时提高其在零下温度下的稳定性是一个挑战。在此,通过引入纤维素纳米晶体(CNC)和植酸(PA),设计了具有自修复性能和导电性的防冻纳米复合水凝胶。通过化学氧化将 CNC 接枝到聚吡咯(PPy)上,将其用作纳米颗粒增强相来增强水凝胶的机械强度(851.8%)。PA 作为生物质材料,可与 HO 分子形成强氢键相互作用,赋予水凝胶优异的防冻性能。基于非共价相互作用,当 PA 的含量为 40.0wt%时,水凝胶在-15°C 下的自修复率达到 92.9%。基于水凝胶的应变传感器具有高灵敏度(GF = 0.75)、快速响应时间(350ms)、良好的导电性(3.1 S m)和在-15°C 下的稳定性。可以使用它们检测各种人体运动,包括小的(微笑和皱眉)和大的变化(肘部和膝盖弯曲)。这项工作为开发在寒冷环境下稳定工作的柔性可穿戴传感器提供了一种有前途的方法。