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Electrochemical actuation of carbon nanotube yarns

机译:碳纳米管纱线的电化学驱动

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We report on actuation in high tensile strength yarns of twist-spun multi-wall carbon nanotubes. Actuation in response to voltage ramps and potentiostatic pulses is studied to quantify the dependence of the actuation strain on the applied voltage. Strains of up to 0.5% are obtained in response to applied potentials of 2.5 V. The dependence of strain on applied voltage and charge is found to be quadratic, in agreement with previous results on the actuation of single-wall carbon nanotubes, with the magnitude of strain also being very similar. The specific capacitance reaches 26 F g(-1). The modulus of the yarns was found to be independent of applied load and voltage within experimental uncertainty.
机译:我们报告了在高拉伸强度的捻纺多壁碳纳米管纱线的驱动。研究了响应于电压斜坡和恒电位脉冲的致动,以量化致动应变对施加电压的依赖性。响应于2.5 V的施加电势,可获得高达0.5%的应变。发现应变对施加电压和电荷的依赖性是二次方的,与先前对单壁碳纳米管致动的结果一致,幅度为应变也非常相似。比电容达到26 F g(-1)。在实验不确定性范围内,发现纱线的模量与施加的载荷和电压无关。

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