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Anion Effects on the Ion Exchange Process and the Deformation Property of Ionic Polymer Metal Composite Actuators

机译:阴离子对离子聚合物金属复合致动器离子交换过程和变形性能的影响

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摘要

An ionic polymer-metal composite (IPMC) actuator composed of a thin perfluorinated ionomer membrane with electrodes plated on both surfaces undergoes a large bending motion when a low electric field is applied across its thickness. Such actuators are soft, lightweight, and able to operate in solutions and thus show promise with regard to a wide range of applications, including MEMS sensors, artificial muscles, biomimetic systems, and medical devices. However, the variations induced by changing the type of anion on the device deformation properties are not well understood; therefore, the present study investigated the effects of different anions on the ion exchange process and the deformation behavior of IPMC actuators with palladium electrodes. Ion exchange was carried out in solutions incorporating various anions and the actuator tip displacement in deionized water was subsequently measured while applying a step voltage. In the step voltage response measurements, larger anions such as nitrate or sulfate led to a more pronounced tip displacement compared to that obtained with smaller anions such as hydroxide or chloride. In AC impedance measurements, larger anions generated greater ion conductivity and a larger double-layer capacitance at the cathode. Based on these mechanical and electrochemical measurements, it is concluded that the presence of larger anions in the ion exchange solution induces a greater degree of double-layer capacitance at the cathode and results in enhanced tip deformation of the IPMC actuators.
机译:当在整个厚度上施加低电场时,由薄的全氟化离聚物膜和两个表面均镀有电极的离子聚合物-金属复合材料(IPMC)驱动器会经历大的弯曲运动。这种致动器柔软,轻便,并且能够在解决方案中运行,因此在包括MEMS传感器,人造肌肉,仿生系统和医疗设备在内的广泛应用中显示出希望。然而,由于改变阴离子类型对器件变形性能的影响而引起的变化尚不清楚。因此,本研究研究了不同阴离子对离子交换过程以及带钯电极的IPMC致动器的变形行为的影响。在掺入各种阴离子的溶液中进行离子交换,随后在施加阶跃电压的同时测量执行器尖端在去离子水中的位移。在阶跃电压响应测量中,与使用较小阴离子(例如氢氧根或氯离子)获得的阴离子相比,较大阴离子(例如硝酸根或硫酸根离子)导致更明显的尖端位移。在交流阻抗测量中,较大的阴离子在阴极处产生较大的离子电导率和较大的双层电容。基于这些机械和电化学测量,可以得出结论,离子交换溶液中存在较大的阴离子会在阴极处引起更大程度的双层电容,并导致IPMC致动器的尖端变形增强。

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