Niu Wenwen, Liu Xiaokong
State Key Laboratory of Supramolecular Structure and Materials, College of Chemistry, Jilin University, Changchun, 130012, P. R. China.
Macromol Rapid Commun. 2022 Dec;43(23):e2200512. doi: 10.1002/marc.202200512. Epub 2022 Aug 3.
With the rapid development of soft electronics in the era of Internet of Everything (IoE), electrical conductors with stretchability, the indispensable components of soft electronics, have gained new opportunities and also faced increasing challenges. According to the principles of electrical conductivity, stretchable electrical conductors can be divided into electronic conductors and ionic conductors. Different from the stretchable electronic conductors derived from stretchable polymeric matrices integrated with electronically conductive fillers, stretchable ionic conductors are constructed by embedding mobile ions into the crosslinked polymer networks. Therefore, stretchable ionic conductors have received extensive attention and in-depth research in the past decade, thanks to their intrinsic stretchability and electrical conductivity. This review systematically summarizes the achievements on the different categories of stretchable ionic conductors (e.g., hydrogels, ionogels, and liquid-free ion-conductive elastomers), in terms of their design, fabrication, properties, and applications. The advantages and limitations of the different types of stretchable ionic conductors are discussed. Outlooks are also provided to envision the remaining challenges for the further development and practical applications of stretchable ionic conductors. It is expected to arouse inspirations for the design and fabrication of new and high-performance stretchable ionic conductors and advanced soft electronics for the IoE era.
在万物互联(IoE)时代,随着软电子技术的迅速发展,作为软电子不可或缺的组成部分,具有拉伸性的电导体迎来了新机遇,同时也面临着日益严峻的挑战。根据导电性原理,可拉伸电导体可分为电子导体和离子导体。与由集成电子导电填料的可拉伸聚合物基体衍生而来的可拉伸电子导体不同,可拉伸离子导体是通过将移动离子嵌入交联聚合物网络中构建而成的。因此,可拉伸离子导体因其固有的拉伸性和导电性,在过去十年中受到了广泛关注并得到了深入研究。本综述系统地总结了不同类型的可拉伸离子导体(如水凝胶、离子凝胶和无液离子导电弹性体)在设计、制备、性能和应用方面所取得的成果。讨论了不同类型可拉伸离子导体的优缺点。还展望了可拉伸离子导体进一步发展和实际应用中仍存在的挑战。期望能为设计和制备适用于IoE时代的新型高性能可拉伸离子导体及先进软电子器件带来启发。