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Fabrication, Morphology and Actuation from Novel Single-Wall Carbon Nanotube/Nafion Composites

机译:新型单壁碳纳米管/ Nafion复合材料的制造,形态和致动

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Mechanical actuators that simultaneously provide high power densities and large force generation capacities are of great scientific and technological interest. Recently single wall carbon nanotube (SWNT) sheets ("bucky" papers) were shown to possess significant promise as electrochemical actuators. Embedding polyelectrolytes, like Nafion~(TM), within the nanotube matrix has the potential to address the limitations of SWNT bundling and tube slippage thus increasing force generation. In this paper two types of Nafion/SWNT composite actuators have been investigated depending on the method of fabrication. In the first case, infiltration of Nafion within SWNT sheet matrix was followed by annealing at 150°C to invert Nafion's micellar structure and render it insoluble. This has resulted in a substantially exfoliated layer morphology that causes a reduction in both conductivity and actuation strain (c.a. 0.03%). In the second case, slow casting of a methanolic suspension of Nafion and SWNT soot, followed by annealing at 150°C, resulted in a more homogeneous structure. This composite, upon electrochemical cycling between -1 and +1 V in aqueous electrolytes, exhibited actuation strains (as high as 0.43%). However, these higher strains are accompanied by an order of magnitude reduction in modulus largely due to Nafion swelling.
机译:同时提供高功率密度和大型力产生容量的机械致动器具有很大的科学和技术兴趣。最近单壁碳纳米管(SWNT)纸张(“抗皱”纸)被证明是作为电化学执行器的重要承诺。嵌入聚电解质,如Nafion〜(TM),在纳米管基质内具有解决SWNT捆绑和管滑动的限制,从而增加力产生。在本文中,已经研究了两种类型的Nafion / SWNT复合致动器,这取决于制造方法。在第一种情况下,在SWNT片材基质中Nafion的渗透后,然后在150℃下退火,以反转Nafion的胶束结构并使其不溶于纤细的胶束结构。这导致基本上剥离的层形态,导致导电性和致动菌株的减少(C.a.03%)。在第二种情况下,缓慢浇注Nafion和SWNT烟灰的甲醇悬浮液,然后在150℃下退火,导致更均匀的结构。在-1和+1V的电化学循环在水电解质中的电化学循环后,该复合材料表现出致动菌株(高达0.43%)。然而,这些更高的菌株在很大程度上伴随着模量的数量级减少,由于Nafion溶胀。

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