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A study on IP~2C actuators using ethylene glycol or EmI-Tf as solvent

机译:以乙二醇或EmI-Tf为溶剂的IP〜2C执行器的研究

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Ionic polymer-polymer composites (IP~2Cs) are a novel class of all-organic electroactive polymers that can operate both as electromechanical actuators and as sensors. They are an evolution of ionic polymer-metal composites (IPMCs), since the metallic layers, used to realize the electrodes, are substituted by using organic conductors based on PEDOT:PSS. For the IPMC based actuators it is generally reported that solvents different from water can be used to avoid the dehydration phenomenon. Here the possibility to use ethylene glycol and an ionic liquid, 1-ethyl-3-methylimidazolium trifluoromethanesulfonate, as diluents for the IP~2C is investigated. Moreover, different materials have been used for the manufacture of the device electrodes and the performances of different organic transducers have been observed and compared. Reported results show that the use of both ethylene glycol and EmI-Tf as the solvent can have beneficial effects both on the working time duration of IP~2C and on the corresponding transduction behaviors.
机译:离子聚合物-聚合物复合材料(IP〜2Cs)是一类新型的全有机电活性聚合物,既可以用作机电致动器,也可以用作传感器。它们是离子聚合物-金属复合材料(IPMC)的发展,因为用于实现电极的金属层被基于PEDOT:PSS的有机导体所取代。对于基于IPMC的执行器,通常报告说可以使用不同于水的溶剂来避免脱水现象。在此研究了使用乙二醇和离子液体1-乙基-3-甲基咪唑鎓三氟甲磺酸盐作为IP〜2C稀释剂的可能性。此外,已经将不同的材料用于制造器件电极,并且已经观察和比较了不同的有机换能器的性能。报道的结果表明,同时使用乙二醇和EmI-Tf作为溶剂可以对IP〜2C的工作时间和相应的转导行为产生有益的影响。

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