Zhang Wanping, Li Zhe, Zhang Qianjie, Zheng Shilian, Zhang Zijia, Chen Simin, Wang Zixin, Zhang Dongmei
School of Perfume and Aroma Technology, Shanghai Institute of Technology, Shanghai, China.
Collaborative Innovation Center of Fragrance Flavour and Cosmetics, School of Perfume and Aroma Technology, Shanghai Institute of Technology, Shanghai, China.
J Biomater Sci Polym Ed. 2025 May;36(7):939-962. doi: 10.1080/09205063.2024.2434300. Epub 2024 Dec 2.
Ionically conductive hydrogels (ICHs) are considered promising flexible electronic devices and various wearable sensors due to the integration of the conductive performance and soft nature of human tissue-like materials with mechanical and sensory traits. Recently, substantial progress has been made in the research of ICHs, including high conductivity, solution processability, strong adhesion, high stretchability, high self-healing ability, and good biocompatibility. These advanced researches also promote their excellent application prospects in medical monitoring, sports health, smart wear, and other fields. This article reviewed ICHs' current classification and design strategies in biomedical applications and the structure-activity relationship of the interface between biological systems and electronics. Furthermore, the typical cases of frontiers of skin interface applications of ICHs were elaborated in transdermal drug delivery, wound healing, disease diagnosis and treatment, and human-computer interaction. This article aims to inspire related research on ionically conductive hydrogels in the biomedical field and promote the innovation and application of flexible wearable electronic device technology.
离子导电水凝胶(ICHs)因其将类似人体组织材料的导电性能和柔软特性与机械和传感特性相结合,而被认为是很有前景的柔性电子器件和各种可穿戴传感器。最近,离子导电水凝胶的研究取得了重大进展,包括高导电性、溶液可加工性、强粘附性、高拉伸性、高自愈能力和良好的生物相容性。这些前沿研究也推动了它们在医疗监测、运动健康、智能穿戴等领域的优异应用前景。本文综述了离子导电水凝胶在生物医学应用中的当前分类和设计策略,以及生物系统与电子器件之间界面的构效关系。此外,还阐述了离子导电水凝胶在皮肤界面应用前沿的典型案例,包括透皮给药、伤口愈合、疾病诊断与治疗以及人机交互。本文旨在激发生物医学领域中关于离子导电水凝胶的相关研究,并推动柔性可穿戴电子器件技术的创新与应用。