Park Si Won, Kim Sang Jun, Park Seong Hyun, Lee Juyeon, Kim Hyungjun, Kim Min Ku
Department of Mechanical Convergence Engineering, Hanyang University, Seoul 04763, Korea.
School of Mechanical Engineering, Hanyang University, Seoul 04763, Korea.
Micromachines (Basel). 2022 Aug 11;13(8):1290. doi: 10.3390/mi13081290.
Electroactive polymer (EAP) is a polymer that reacts to electrical stimuli, such as voltage, and can be divided into electronic and ionic EAP by an electrical energy transfer mechanism within the polymer. The mechanism of ionic EAP is the movement of the positive ions inducing voltage change in the polymer membrane. Among the ionic EAPs, an ionic polymer-metal composite (IPMC) is composed of a metal electrode on the surface of the polymer membrane. A common material for the polymer membrane of IPMC is Nafion containing hydrogen ions, and platinum, gold, and silver are commonly used for the electrode. As a result, IPMC has advantages, such as low voltage requirements, large bending displacement, and bidirectional actuation. Manufacturing of IPMC is composed of preparing the polymer membrane and plating electrode. Preparation methods for the membrane include solution casting, hot pressing, and 3D printing. Meanwhile, electrode formation methods include electroless plating, electroplating, direct assembly process, and sputtering deposition. The manufactured IPMC is widely demonstrated in applications such as grippers, micro-pumps, biomedical, biomimetics, bending sensors, flow sensors, energy harvesters, biosensors, and humidity sensors. This paper will review the overall field of IPMC by demonstrating the categorization, principle, materials, and manufacturing method of IPMC and its applications.
电活性聚合物(EAP)是一种对电刺激(如电压)产生反应的聚合物,根据聚合物内部的电能转移机制可分为电子型和离子型EAP。离子型EAP的机制是聚合物膜中阳离子的移动引起电压变化。在离子型EAP中,离子聚合物-金属复合材料(IPMC)由聚合物膜表面的金属电极组成。IPMC聚合物膜的常用材料是含氢离子的Nafion,电极通常使用铂、金和银。因此,IPMC具有低电压要求、大弯曲位移和双向驱动等优点。IPMC的制造包括制备聚合物膜和电镀电极。膜的制备方法包括溶液浇铸、热压和3D打印。同时,电极形成方法包括化学镀、电镀、直接组装工艺和溅射沉积。制造出的IPMC在诸如夹具、微型泵、生物医学、仿生学、弯曲传感器、流量传感器、能量收集器、生物传感器和湿度传感器等应用中得到了广泛展示。本文将通过阐述IPMC的分类、原理、材料、制造方法及其应用来综述IPMC的整个领域。