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首页> 外文期刊>Sensors and Actuators >Thin ink-jet printed trilayer actuators composed of PEDOT:PSS on interpenetrating polymer networks
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Thin ink-jet printed trilayer actuators composed of PEDOT:PSS on interpenetrating polymer networks

机译:互穿聚合物网络上由PEDOT:PSS组成的薄型喷墨印刷三层执行器

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HighlightsThin (12.7 μm) films of ink-jet printed PEDOT:PSS on semi-IPN trilayer for actuators.Stable linear actuation in organic and aqueous electrolyte.Bending actuation in air using an ionic liquid as electrolyte.AbstractMass production of conducting polymer actuators with reliable performance is envisaged in the field of artificial muscles. In this study, inkjet printing and spin coating – two established technologies for large-scale production – were combined for microactuator fabrication. Actuators based on poly(3,4-ethylenedioxy-thiophene):poly(styrene sulfonate) electrodes (PEDOT:PSS, 2.2 μm thick, 190 S cm−1), which were inkjet-printed onto a spin-coated membrane of an interpenetrating polymer network (IPN) thin film composed of nitrile butadiene rubber and poly(ethylene oxide) (PEDOT:PSS-IPN-PEDOT:PSS) with a total thickness of 12.7 μm, were prepared and studied. Our goal was to investigate the performance of the trilayers in linear actuation, in aqueous and organic (propylene carbonate) solutions of bis(trifluoromethane)sulfonimide lithium salt (LiTFSI) used as electrolytes, and in bending actuation in air using an ionic liquid as the electrolyte. Electro-chemo-mechanical deformation (ECMD) measurements were consistent with electrochemical measurements showing a strain of 3% in aqueous electrolyte and 1% in propylene carbonate. A strain of 0.14% in the bending mode in the ionic liquid was observed due to electric double layer charging, while in electrolyte solutions, redox reactions determined the linear actuation properties. In the aqueous electrolyte, a specific capacitance of 193 F g−1was measured for the printed PEDOT:PSS films, with potential for applications in supercapacitors.
机译: 突出显示 在半IPN三层上喷墨印刷的PEDOT:PSS薄膜(12.7μm),用于致动器。 在有机和水性电解质中稳定的线性驱动。 使用离子液体作为电解质在空气中弯曲致动。 摘要 在人造肌肉领域中已设想了具有可靠性能的导电聚合物致动器的批量生产。在这项研究中,将喷墨印刷和旋涂这两种成熟的大规模生产技术结合在一起,用于微致动器的制造。基于聚(3,4-乙撑二氧噻吩):聚(苯乙烯磺酸盐)电极的致动器(PEDOT:PSS,厚度2.2μm,190 S cm -1 ),然后将其喷墨印刷到由丁腈橡胶和聚环氧乙烷组成的互穿聚合物网络(IPN)薄膜的旋涂膜上(PEDOT:PSS-IPN-PEDOT:PSS)准备并研究了12.7μm。我们的目标是研究三层膜在线性驱动,双(三氟甲烷)磺酰亚胺锂盐(LiTFSI)的水溶液和有机碳酸亚丙酯溶液(LiTFSI)中的性能以及在空气中使用离子液体作为弯曲驱动器时的性能。电解质。电化学机械变形(ECMD)测量与电化学测量一致,电化学测量显示在水性电解质中的应变为3%,在碳酸亚丙酯中的应变为1%。由于双电荷层充电,在离子液体中观察到弯曲模式下的0.14%应变,而在电解质溶液中,氧化还原反应确定了线性驱动特性。在水性电解质中,印刷的PEDOT:PSS薄膜的比电容为193 F g -1 ,具有在超级电容器中应用的潜力。

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