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Strategies for tuning carbon nanotube plastic actuator performance through material hybridization and the thickness effect: A proof of principle

机译:通过材料杂交和厚度效应调节碳纳米管塑料执行器性能的策略:原理证明

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摘要

Bucky gel actuators are a kind of electrochemical actuator based on carbon nanotubes having interesting features. They are intrinsically safe because are operated at low voltage, they are lightweight and they are able to work in air without any liquid electrolyte. One key aspect that needs improvement is their actuation speed which is strongly dependent on their ability of being efficiently charged and discharged without exceeding the electrochemical stability window of the electrolyte. By proper material processing, we have successfully addressed this issue. An actuator thickness reduction to one third of the original size results in a one order of magnitude increase of both the strain at higher frequencies and the maximum operating frequency. The strain improvement at high frequency due to thinning has the sole drawback of decreasing the maximum strain that can be achieved in quasi-static conditions. We addressed this second issue by using a proper combination of actuating materials. Oxidative polymerization of pyrrole was carried out directly on preformed bucky gel slurry in order to combine the remarkable properties of ionic actuators based on carbon nanotubes and polypyrrole. A small amount of polypyrrole is sufficient to dramatically improve the overall actuator performance, and by using this hybrid it is possible to obtain thin actuators (about 0.1 mm) with superior performance even at lower frequencies.
机译:Bucky凝胶致动器是一种基于具有有趣特征的碳纳米管的电化学致动器。它们本质上是安全的,因为它们在低压下工作,重量轻,并且能够在没有任何液体电解质的情况下在空气中工作。需要改进的一个关键方面是它们的致动速度,其致动速度很大程度上取决于它们在不超过电解质的电化学稳定性窗口的情况下被有效充电和放电的能力。通过适当的材料处理,我们已成功解决了这个问题。将执行器厚度减小到原始尺寸的三分之一会导致较高频率下的应变和最大工作频率都增加一个数量级。由于变薄而导致的高频应变改善的唯一缺点是降低了在准静态条件下可实现的最大应变。我们通过使用适当的驱动材料组合解决了第二个问题。为了结合基于碳纳米管和聚吡咯的离子型促动器的卓越性能,吡咯的氧化聚合直接在预制的Bucky凝胶浆料上进行。少量的聚吡咯足以显着改善整体执行机构的性能,通过使用这种混合材料,即使在较低的频率下也可以获得性能优越的薄型执行机构(约0.1 mm)。

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