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Experimental Investigation on Electrochemical Properties of Ionic Polymer-Metal Composite

机译:离子型聚合物金属复合材料电化学性能的实验研究

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Platinum has been used as an effective electrode material for ionic polymer-metal composite (IPMC) actuators. Realizing that platinum is a common catalyst for many electrochemical reactions; the platinum surface in IPMCs allows many components to be adsorbed. Therefore, under imposed electrical potentials, platinum electrodes used for IPMCs introduce complex electrochemical phenomena on the platinum-electrolyte interface. This study points out that the electrochemical characteristics of platinum are important in understanding the fundamental actuation mechanism of IPMCs. Electrochemical analyses, including voltammetry, AC impedance, and capacitance measurements, on IPMC samples are carried out in aqueous solutions. Such experimental results reveal the complex electrochemical behavior of IPMCs, including inductive behavior in higher frequencies than has originally been expected. The Mott-Schottky experiment is also performed to investigate the charge transfer and the possible adsorption mechanism associated with IPMCs. Seemingly, the equivalent circuit of IPMC follows a RLC circuit.
机译:铂已被用作离子聚合物-金属复合材料(IPMC)致动器的有效电极材料。意识到铂是许多电化学反应的常用催化剂; IPMC中的铂表面允许许多组分被吸附。因此,在施加电势的情况下,用于IPMC的铂电极在铂-电解质界面上引入了复杂的电化学现象。这项研究指出,铂的电化学特性对于理解IPMC的基本驱动机理很重要。在水溶液中对IPMC样品进行电化学分析,包括伏安法,交流阻抗和电容测量。这样的实验结果揭示了IPMC的复杂电化学行为,包括比最初预期的频率更高的感应行为。还进行了Mott-Schottky实验,以研究与IPMC相关的电荷转移和可能的吸附机理。看来,IPMC的等效电路遵循RLC电路。

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