Polypyrrole Actuator Based on Electrospun Microribbons

聚吡咯 材料科学 执行机构 人工肌肉 导电聚合物 纳米技术 电活性聚合物 静电纺丝 制作 电化学 电极 聚合物 电解质 图层(电子) 聚苯乙烯 化学工程 光电子学 复合材料 计算机科学 聚合 化学 人工智能 物理化学 替代医学 病理 工程类 医学
作者
Mihaela Beregoi,Alexandru Evanghelidis,Victor C. Diculescu,Horia Iovu,Ionuţ Enculescu
出处
期刊:ACS Applied Materials & Interfaces [American Chemical Society]
卷期号:9 (43): 38068-38075 被引量:40
标识
DOI:10.1021/acsami.7b13196
摘要

The development of soft actuators by using inexpensive raw materials and straightforward fabrication techniques, aiming at creating and developing muscle like micromanipulators, represents an important challenge nowadays. Providing such devices with biomimetic qualities, for example, sensing different external stimuli, adds even more complexity to the task. We developed electroactive polymer-coated microribbons that undergo conformational changes in response to external physical and chemical parameters. These were prepared following three simple steps. During the first step nylon-6/6 microribbons were fabricated by electrospinning. In a second step the microribbons were one side coated with a metallic layer. Finally, a conducting layer of polypyrrole was added by means of electrochemical deposition. Strips of polypyrrole-coated aligned microribbon meshes were tested as actuators responding to current, pH, and temperature. The electrochemical activity of the microstructured actuators was investigated by recording cyclic voltammograms. Chronopontentiograms for specific current, pH, and temperature values were obtained in electrolytes with different compositions. It was shown that, upon variation of the external stimulus, the actuator undergoes conformational changes due to the reduction processes of the polypyrrole layer. The ability of the actuator to hold and release thin wires, and to collect polystyrene microspheres from the bottom of the electrochemical cell, was also investigated.
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