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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Electromechanical actuation of macroscopic carbon nanotube structures: mats and aligned ribbons
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Electromechanical actuation of macroscopic carbon nanotube structures: mats and aligned ribbons

机译:宏观碳纳米管结构的机电驱动:垫子和对齐的碳带

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摘要

The electromechanical actuation of macroscopic carbon nanotube (CNT) structures, including single and multi walled CNT mats and aligned ribbons, is analyzed and compared. From experimental evidence, actuation due to quantum chemical and electrostatic effects can be distinguished. Their respective contribution to the total actuation depends on two key parameters, namely Young's modulus and charge density. While mechanical energy densities of actuated structures are appreciable, electromechanical conversion efficiencies are found to be unpractically low.
机译:分析和比较了宏观碳纳米管(CNT)结构(包括单壁和多壁CNT垫和对齐的带)的机电致动。根据实验证据,可以区分由于量子化学和静电作用而引起的致动。它们对总驱动的贡献取决于两个关键参数,即杨氏模量和电荷密度。尽管致动结构的机械能密度是可观的,但是发现机电转换效率实际上是低的。

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