首页 /研究 /Electroactive Artificial Muscles Based on Functionally Antagonistic Core–Shell Polymer Electrolyte Derived from PS‐<i>b</i>‐PSS Block Copolymer
OTHER

Electroactive Artificial Muscles Based on Functionally Antagonistic Core–Shell Polymer Electrolyte Derived from PS‐<i>b</i>‐PSS Block Copolymer

Van Hiep Nguyen, Jaehwan Kim, Rassoul Tabassian, Moumita Kotal, Kiwoo Jun, Jung‐Hwan Oh, Ji‐Myeong Son, Muhammad Taha Manzoor, Kwang J. Kim, Il‐Kwon Oh

发表年份
2018
引用次数
51
访问权限
开放获取

摘要

Abstract Electroactive ionic soft actuators, a type of artificial muscles containing a polymer electrolyte membrane sandwiched between two electrodes, have been intensively investigated owing to their potential applications to bioinspired soft robotics, wearable electronics, and active biomedical devices. However, the design and synthesis of an efficient polymer electrolyte suitable for ion migration have been major challenges in developing high‐performance ionic soft actuators. Herein, a highly bendable ionic soft actuator based on an unprecedented block copolymer is reported, i.e., polystyrene‐ b ‐poly(1‐ethyl‐3‐methylimidazolium‐4‐styrenesulfonate) (PS‐ b ‐PSS‐EMIm), with a functionally antagonistic core–shell architecture that is specifically designed as an ionic exchangeable polymer electrolyte. The corresponding actuator shows exceptionally good actuation performance, with a high displacement of 8.22 mm at an ultralow voltage of 0.5 V, a fast rise time of 5 s, and excellent durability over 14 000 cycles. It is envisaged that the development of this high‐performance ionic soft actuator could contribute to the progress toward the realization of the aforementioned applications. Furthermore, the procedure described herein can also be applied for developing novel polymer electrolytes related to solid‐state lithium batteries and fuel cells.

关键词

ElectrolyteMaterials scienceArtificial muscleCopolymerPolymerIonic liquidElectroactive polymersIonic bondingNanotechnologySoft robotics

相关论文

查看 OTHER 分类全部论文