Shenzhen Key Laboratory of Soft Mechanics & Smart Manufacturing, Department of Mechanics and Aerospace Engineering, Southern University of Science and Technology, Shenzhen, 518055, P. R. China.
Guangdong Provincial Key Lab of Robotics and Intelligent System, Shenzhen Institute of Advanced Technology, Chinese Academy of Science, Shenzhen, 518055, P. R. China.
Macromol Rapid Commun. 2023 Jun;44(12):e2200957. doi: 10.1002/marc.202200957. Epub 2023 Apr 25.
The emergence of hydrophobic ionogels composed of hydrophobic polymer matrices and hydrophobic ionic liquids has drastically broadened the applications of ionic devices, especially for underwater explorations. Compared with traditional ionogels, hydrophobic ones are capable of achieving long-term stability in ambient and aqueous environments. In this review, the latest research developments of intrinsically hydrophobic ionogels are summarized, with particular emphases placed on the materials, mechanisms and applications. The basic issues about hydrophobic ionogels, including the material systems, dynamic gelation bonds and network structures are elucidated. The up-to-date advent of the ambient/underwater applications of hydrophobic ionogels concerning adhesion, self-healing, and sensing are comprehensively summarized. Special attention is paid to underwater scenarios considering the rapid development of marine explorations and the intrinsic properties of hydrophobic ionogels. Finally, the current challenges and immediate opportunities of this emerging yet fast-developing research field are discussed.
由疏水聚合物基质和疏水离子液体组成的疏水性离子凝胶的出现,极大地拓宽了离子器件的应用范围,特别是在水下探索方面。与传统的离子凝胶相比,疏水性离子凝胶能够在环境和水介质中实现长期稳定。本综述总结了本征疏水性离子凝胶的最新研究进展,特别强调了材料、机理和应用。阐述了疏水性离子凝胶的基本问题,包括材料体系、动态凝胶键和网络结构。全面总结了疏水性离子凝胶在水下环境中的最新应用,包括粘附、自修复和传感。特别关注水下场景,考虑到海洋探索的快速发展和疏水性离子凝胶的固有特性。最后,讨论了这个新兴但快速发展的研究领域当前的挑战和机遇。