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Spray-coated carbon nanotube carpets for creeping reduction of conducting polymer based artificial muscles

机译:喷涂碳纳米管地毯,用于蠕变还原导电聚合物基人造肌肉

摘要

During cyclic actuation, conducting polymer based artificial muscles are often creeping from the initial movement range. One of the likely reasons of such behaviour is unbalanced charging during conducting polymer oxidation and reduction. To improve the actuation reversibility and subsequently the long time performance of ionic actuators, we suggest using spray-coated carbon nanotube (CNT) carpets on the surface of the conducting polymer electrodes. We show that carbon nanotubes facilitate a conducting polymer redox reaction and improve its reversibility. Consequently, in the long term, charge accumulation in the polymer film is avoided leading to a significantly improved lifetime performance during cycling actuation. To our knowledge, it is the first time a simple solution to an actuator creeping problem has been suggested.
机译:在循环驱动过程中,基于聚合物的人造肌肉通常会从初始运动范围开始爬行。这种行为的可能原因之一是在进行聚合物氧化和还原过程中带电不平衡。为了提高离子致动器的驱动可逆性以及随后的长期性能,我们建议在导电聚合物电极的表面上使用喷涂碳纳米管(CNT)地毯。我们表明碳纳米管促进导电聚合物氧化还原反应,并改善其可逆性。因此,从长远来看,避免了聚合物膜中的电荷积聚,从而显着提高了循环致动期间的使用寿命。据我们所知,这是首次提出一种简单的解决方案,以解决执行机构蠕变问题。

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