Li Ying, Cheng Qiwei, Deng Zexing, Zhang Tao, Luo Man, Huang Xiaoxiao, Wang Yuheng, Wang Wen, Zhao Xin
College of Materials Science and Engineering, Xi'an University of Science and Technology, Xi'an 710054, China.
Department of Radiology, Functional and Molecular Imaging Key Lab of Shaanxi Province, Tangdu Hospital, Air Force Medical University, Xi'an 710038, China.
Polymers (Basel). 2024 Apr 2;16(7):971. doi: 10.3390/polym16070971.
Hydrogels are soft-wet materials with a hydrophilic three-dimensional network structure offering controllable stretchability, conductivity, and biocompatibility. However, traditional conductive hydrogels only operate in mild environments and exhibit poor environmental tolerance due to their high water content and hydrophilic network, which result in undesirable swelling, susceptibility to freezing at sub-zero temperatures, and structural dehydration through evaporation. The application range of conductive hydrogels is significantly restricted by these limitations. Therefore, developing environmentally tolerant conductive hydrogels (ETCHs) is crucial to increasing the application scope of these materials. In this review, we summarize recent strategies for designing multifunctional conductive hydrogels that possess anti-freezing, anti-drying, and anti-swelling properties. Furthermore, we briefly introduce some of the applications of ETCHs, including wearable sensors, bioelectrodes, soft robots, and wound dressings. The current development status of different types of ETCHs and their limitations are analyzed to further discuss future research directions and development prospects.
水凝胶是具有亲水性三维网络结构的柔软湿润材料,具有可控的拉伸性、导电性和生物相容性。然而,传统的导电水凝胶仅在温和环境下运行,由于其高含水量和亲水网络,表现出较差的环境耐受性,这导致了不理想的膨胀、在零下温度下易结冰以及通过蒸发导致结构脱水。这些限制显著限制了导电水凝胶的应用范围。因此,开发环境耐受性导电水凝胶(ETCHs)对于扩大这些材料的应用范围至关重要。在这篇综述中,我们总结了设计具有抗冻、抗干燥和抗膨胀性能的多功能导电水凝胶的最新策略。此外,我们简要介绍了ETCHs的一些应用,包括可穿戴传感器、生物电极、软机器人和伤口敷料。分析了不同类型ETCHs的当前发展状况及其局限性,以进一步讨论未来的研究方向和发展前景。