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THE ELECTROPOLYMERIZATION OF CONDUCTIVE POLYMER FIBERS FOR BIOMIMETIC ACTUATORS

机译:用于仿生致动器的导电聚合物纤维的电聚合

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Recently there has been much research work concerning actuators and artificial muscles using conductive polymers such as polypyrrole and polythiophene. These materials are useful for a new power source of micro devices such as micro motors, micro pumps, and micro catheters. In this work, in order to give the materials multidirectional motion and high workability, polypyrrole fibers were prepared by electropolymerization using a carbon fiber or a metal fiber as a working electrode. The relationship between polymerization condition and the diameter, the surface structure, the conductivity, and the actuation behavior of the polypyrrole fiber were investigated. In this paper, the information about the polypyrrole fibers synthesized by electropolymerization using a gold fiber as a working electrode is shown.
机译:最近,使用诸如聚吡咯和聚噻吩的导电聚合物,有很多研究工作有关致动器和人工肌肉。这些材料对于微型器件的新电源,例如微型电动机,微泵和微导管。在这项工作中,为了提供材料多向运动和高可加工性,通过使用碳纤维或金属纤维作为工作电极的电聚合来制备聚吡咯纤维。研究了聚合条件与直径,表面结构,导电性和萘吡咯纤维的致动行为的关系。本文示出了有关通过使用金纤维作为工作电极的电聚合而合成的聚吡咯纤维的信息。

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