首页> 外文期刊>Sensors and Actuators >Electrochemical property and actuation mechanism of an actuator using three different electrode and same electrolyte in air: Carbon nanotube/ionic liquid/polymer gel electrode, carbon nanotube/ionic liquid gel electrode and Au paste as an electrode
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Electrochemical property and actuation mechanism of an actuator using three different electrode and same electrolyte in air: Carbon nanotube/ionic liquid/polymer gel electrode, carbon nanotube/ionic liquid gel electrode and Au paste as an electrode

机译:在空气中使用三种不同的电极和相同的电解质的执行器的电化学性质和启动机理:碳纳米管/离子液体/聚合物凝胶电极,碳纳​​米管/离子液体凝胶电极和金糊剂作为电极

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摘要

The purpose of this paper is to study an electrochemical property and actuation mechanism of an actuator using same electrolyte and three different electrode (carbon nanotube (SWNT)/ionic liquid (IL)/polymer gel electrode, SWNT/IL gel electrode and Au paste as an electrode) in air, and to investigate the actuator which performs much better. We developed a PVdF(HFP)-IL gel actuator using only Au paste as an electrode layer in air (non-Faradaically driven type), i.e., the electrode layer was not composed of polymer, IL and SWNT, and the electrolyte layer was composed of polymer and IL. Furthermore, in the previous paper, the electrode layers that laminate the electrolyte layer expanded or contracted, giving rise to a bending motion of the actuator strip (Fig. 1(c) type), in this paper, we showed that, at our conventional actuator (Fig. 1 (c) type) and actuator with non-polymer-supported bucky gel electrodes containing internal IL (Fig. 1(b) type), the electrolyte layer also expand or contract, giving rise to a bending motion of the actuator. As a result, we show that polymer-IL gel of the electrolyte is important factor in the field of the low-voltage electroactive polymer (EAP) actuator, and we are considered that these results become the important design principle of the low-voltage EAP actuator.
机译:本文的目的是研究使用相同的电解质和三个不同的电极(碳纳米管(SWNT)/离子液体(IL)/聚合物凝胶电极,SWNT / IL凝胶电极和Au糊剂)的致动器的电化学性能和致动机理。一个电极),并研究执行器的性能要好得多。我们开发了一种PVdF(HFP)-IL凝胶致动器,仅在空气中使用Au糊剂作为电极层(非法拉第驱动型),即电极层不由聚合物,IL和SWNT组成,电解质层由聚合物和IL。此外,在先前的论文中,层压电解质层的电极层会膨胀或收缩,从而引起执行器条的弯曲运动(图1(c)类型),在本文中,我们证明了在常规情况下致动器(图1(c)型)和带有包含内部IL的非聚合物支撑的bucky凝胶电极的致动器(图1(b)型),电解质层也会膨胀或收缩,从而引起电极的弯曲运动。执行器。结果表明,电解质的聚合物-IL凝胶是低压电活性聚合物(EAP)致动器领域的重要因素,并且我们认为这些结果成为低压EAP的重要设计原理。执行器。

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