School of Chemical and Biological Engineering, Seoul National University , Seoul 08826, Republic of Korea.
Department of Advanced Materials Engineering for Information and Electronics, Kyung Hee University , Gyeonggi-do 17104, Republic of Korea.
ACS Appl Mater Interfaces. 2017 Jul 5;9(26):21998-22005. doi: 10.1021/acsami.7b04779. Epub 2017 Jun 21.
Ionic polymer-metal composites (IPMCs) have been proposed as biomimetic actuators that are operable at low applied voltages. However, the bending strain and generating force of the IPMC actuators have generally exhibited a trade-off relationship, whereas simultaneous enhancement of both the qualities is required for their practical applications. Herein, a significant improvement in both the strain and force of the IPMC actuators is achieved by a facile approach, exploiting thickness-controlled ion-exchange membranes and nanodispersed metal electrodes. To guarantee a large generating force of the IPMC actuators, ultrathick ion-exchange membranes are prepared by stacking pre-extruded Nafion films. Metal electrodes with a nanodispersed structure are formed on the membranes via alcohol-assisted electroless plating, which allows increased capacitance and facilitated ion transport. The resulting actuators exhibit greatly enhanced electromechanical properties, including an approximately four times larger strain and two times larger force compared to those of actuators having the conventional structure. Moreover, the ability to lift 16 coins (a weight of 124 g) has been successfully demonstrated using ultrathick IPMC actuators, which shows great promise in realizing artificial muscles.
离子聚合物-金属复合材料(IPMC)已被提议作为在低应用电压下工作的仿生致动器。然而,IPMC 致动器的弯曲应变和产生力通常表现出一种权衡关系,而其实际应用需要同时提高这两个质量。在此,通过一种简单的方法实现了 IPMC 致动器的应变和力的显著改善,该方法利用厚度可控的离子交换膜和纳米分散的金属电极。为了保证 IPMC 致动器产生较大的力,通过堆叠预挤压的 Nafion 薄膜制备了超厚的离子交换膜。通过醇辅助化学镀在膜上形成具有纳米分散结构的金属电极,这允许增加电容并促进离子传输。所得致动器表现出大大增强的机电性能,包括与具有传统结构的致动器相比,应变约大四倍,力大约大二倍。此外,使用超厚的 IPMC 致动器成功地展示了举起 16 个硬币(重 124 克)的能力,这在实现人造肌肉方面具有很大的前景。