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碳纳米管与离聚物聚合物复合材料的机电驱动

Electromechanical actuation of composite material from carbon nanotubes and ionomeric polymer.

作者信息

Levitsky I A, Kanelos P, Euler William B

机构信息

Emitech Inc., Fall River, Massachusetts 02720, USA.

出版信息

J Chem Phys. 2004 Jul 8;121(2):1058-65. doi: 10.1063/1.1760734.

Abstract

An actuating system composed of nafion ionomeric polymer coated with single-walled carbon nanotubes electrodes was studied as an electromechanical actuator. The actuator gives a sizable mechanical response to low voltages (turn-on voltage of approximately 2.5 V) under open-air conditions, i.e., in the absence of a surrounding supporting electrolyte. The actuator is active under both dc and ac bias and has a strong resonance at low frequencies which is dependent upon the size of the actuator. The actuator was studied using Fourier transform infrared and vis-NIR spectroscopies, cyclic voltammetry, and by the current-time response under an applied step voltage. An analytical model is proposed to understand the electrical behavior, which is consistent with the spectroscopic results.

摘要

一种由涂覆有单壁碳纳米管电极的全氟磺酸离子聚合物组成的驱动系统被作为一种机电致动器进行了研究。该致动器在露天条件下,即在没有周围支持电解质的情况下,对低电压(开启电压约为2.5 V)能给出可观的机械响应。该致动器在直流和交流偏置下均有活性,并且在低频处有强烈的共振,共振频率取决于致动器的尺寸。使用傅里叶变换红外光谱和可见-近红外光谱、循环伏安法以及在施加阶跃电压下的电流-时间响应来研究该致动器。提出了一个分析模型来理解其电学行为,该模型与光谱结果一致。

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