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Novel Actuating System Based on a Composite of Single-Walled Carbon Nanotubes and an Ionomeric Polymer

机译:基于单壁碳纳米管复合物的新型致动系统及离子聚合物

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We report the fabrication and characterization of a novel composite material based on single walled carbon nanotubes (SWNT)s and the ionomeric polymer Nafion. SWNTs were airbrushed from a chloroform suspension onto both sides of a Nafion membrane (180 μm) and the electromechanical properties of the composite material were explored. The outer layers of carbon nanotubes acted as electrodes in order to pass electrical current through the system while the mechanical response was monitored. Under this design, .the mechanical response could be characterized, with respect to the electrical signal, as a function of: voltage, waveform (AC vs. DC), and frequency (AC). Data was also compiled to gauge the effect of size and thickness of each individual layer of the system. The reference samples (graphite-Nafion and sputtered gold-Nafion) did not exhibit mechanical actuation at the same conditions. An analytical model for' current decay was considered that is in agreement with the experimental data. Bi-exponential decay with a long time component was found for bias, which is above the actuating threshold. That was explained in terms of increasing of the water dielectric constant and polymer-SWNT interface area. The possible mechanisms of the actuation in this novel composite are discussed.
机译:我们报告了基于单壁碳纳米管(SWNT)和离聚物Nafion的新型复合材料的制造和表征。 SWNT从氯仿悬浮液中喷射到Nafion膜(180μm)的两侧,并探索复合材料的机电性能。碳纳米管的外层用作电极,以便在监测机械响应时通过系统通过电流。在这种设计下,可以在电信号上表征机械响应,作为:电压,波形(AC与DC)和频率(AC)。还编译了数据以衡量系统的尺寸和厚度的效果。参考样品(石墨 - Nafion和溅射的金 - Nafion)在相同条件下没有表现出机械致动。考虑了“当前衰减的分析模型与实验数据一致。为偏置的偏置而发现具有长时间分量的双指数衰减,其高于致动阈值。这是在水介质恒定和聚合物-WNT接口区域的增加方面解释的。讨论了这种新型复合材料中的致动的可能机制。

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