Wang Rongjie, Jin Boming, Li Jiaxin, Li Jing, Xie Jingjing, Zhang Pengchao, Fu Zhengyi
State Key Laboratory of Advanced Technology for Materials Synthesis and Processing, Wuhan University of Technology, Wuhan 430070, China.
Hubei Longzhong Laboratory, Xiangyang 441022, China.
Gels. 2025 May 21;11(5):377. doi: 10.3390/gels11050377.
Conductive hydrogels have important application prospects in the field of wearable sensing, which can identify various biological signals for human motion monitoring. However, the preparation of flexible conductive hydrogels with high sensitivity and stability to achieve reliable signal recording remains a challenge. Herein, we prepared a conductive hydrogel by introducing conductive TiCT MXene nanosheets into a dual network structure formed by Zn crosslinked polyacrylic acid and silk fibroin for use as a wearable capacitive strain sensor. The prepared injectable hydrogel has a uniform porous structure and good flexibility, and the elongation at break can reach 1750%. A large number of ionic coordination bonds and hydrogen bond interactions make the hydrogel exhibit good structural stability and a fast self-healing property (30 s). In addition, the introduction of TiCT MXene as a conductive medium in hydrogel improves the conductivity. Due to the high conductivity of 0.16 S/m, the capacitive strain sensor assembled from this hydrogel presents a high gauge factor of 1.78 over a wide strain range of 0-200%, a fast response time of 0.2 s, and good cycling stability. As a wearable sensor, the hydrogel can accurately monitor the activities of different joints in real-time. This work is expected to provide a new approach for wearable hydrogel electronic devices.
导电水凝胶在可穿戴传感领域具有重要的应用前景,其能够识别各种生物信号以用于人体运动监测。然而,制备具有高灵敏度和稳定性以实现可靠信号记录的柔性导电水凝胶仍然是一项挑战。在此,我们通过将导电TiCT MXene纳米片引入由锌交联聚丙烯酸和丝素蛋白形成的双网络结构中来制备一种导电水凝胶,用作可穿戴电容式应变传感器。所制备的可注射水凝胶具有均匀的多孔结构和良好的柔韧性,断裂伸长率可达1750%。大量的离子配位键和氢键相互作用使水凝胶具有良好的结构稳定性和快速的自愈性能(30秒)。此外,在水凝胶中引入TiCT MXene作为导电介质提高了导电性。由于具有0.16 S/m的高电导率,由这种水凝胶组装而成的电容式应变传感器在0 - 200%的宽应变范围内呈现出1.78的高应变系数、0.2秒的快速响应时间以及良好的循环稳定性。作为可穿戴传感器,该水凝胶能够实时准确地监测不同关节的活动。这项工作有望为可穿戴水凝胶电子器件提供一种新方法。