The Key Laboratory of Bionic Engineering, Ministry of Education, Jilin University, Changchun, 130025, China.
School of Mechanical and Aerospace Engineering, Jilin University, Changchun, 130025, China.
Adv Sci (Weinh). 2023 Apr;10(10):e2206135. doi: 10.1002/advs.202206135. Epub 2023 Jan 22.
With the characteristics of low driving voltage, light weight, and flexibility, ionic polymer-metal composites (IPMCs) have attracted much attention as excellent candidates for artificial muscle materials in the fields of biomedical devices, flexible robots, and microelectromechanical systems. Under small voltage excitation, ions inside the IPMC proton exchange membrane migrate directionally, leading to differences in the expansion rate of the cathode and the anode, which in turn deform. This behavior is caused by the synergistic action of a three-layer structure consisting of an external electrode layer and an internal proton exchange membrane, but the electrode layer is more dominant in this process due to the migration and storage of ions. The exploration of modifications and alternatives for proton exchange membranes and recent advances in the fabrication and characterization of conductive materials, especially carbon-based materials and conductive polymers, have contributed significantly to the development of IPMCs. This paper reviews the progress in the application of proton exchange membranes and electrode materials for IPMCs, discusses various processes currently applied to IPMCs preparation, and introduces various promising applications of cutting-edge IPMCs with high performance to provide new ideas and approaches for the research of new generation of low-voltage ionic soft actuators.
具有低驱动电压、重量轻、柔韧性好等特点,离子聚合物-金属复合材料(IPMC)作为生物医学设备、柔性机器人和微机电系统中人工肌肉材料的优秀候选材料引起了广泛关注。在小电压激励下,IPMC 质子交换膜内的离子沿特定方向定向迁移,导致阴极和阳极的膨胀率不同,从而发生变形。这种行为是由外部电极层和内部质子交换膜组成的三层结构的协同作用引起的,但在这个过程中,由于离子的迁移和存储,电极层更为重要。质子交换膜的修饰和替代物的探索以及导电材料(特别是碳基材料和导电聚合物)的制造和特性方面的最新进展,为 IPMC 的发展做出了重要贡献。本文综述了 IPMC 用质子交换膜和电极材料的应用进展,讨论了目前应用于 IPMC 制备的各种工艺,并介绍了各种具有高性能的前沿 IPMC 的有前途的应用,为新一代低电压离子软驱动器的研究提供了新的思路和方法。