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Optically driven nanotube actuators

机译:光驱纳米管执行器

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摘要

Optically driven actuators have been fabricated from single-wall carbon nanotube-polymer composite sheets. Like natural muscles, the millimetre-scale actuators are assemblies of millions of individual nanotube actuators processed into macroscopic length scales and bonded to an acrylic elastomer sheet to form an actuator that have been shown to generate higher stress than natural muscles and higher strains than high-modulus piezoelectric materials. Strain measurements revealed G.01 percent-0.3 percent elastic strain generated due to electrostatic and thermal effects under visible light intensities of 5-120 mW cm~(-2). An optically actuated nanotube gripper is demonstrated to show manipulation of small objects. This actuation technology overcomes some of the fundamental limitations such as the use of high voltages or electrochemical solutions for actuation, opening up possibilities for remote light-induced actuation technologies.
机译:光驱动致动器已经由单壁碳纳米管-聚合物复合片制成。与天然肌肉一样,毫米级执行器是成千上万个单独的纳米管执行器的组件,这些执行器被加工成宏观的长度标度,并与丙烯酸弹性体片粘合以形成执行器,该执行器已显示出比天然肌肉更高的应力和比高强度肌肉更大的应变。模量压电材料。应变测量表明,在可见光强度为5-120 mW cm〜(-2)时,由于静电和热效应而产生的弹性应变为G.01%-0.3%。演示了一个光学驱动的纳米管夹持器,显示了对小物体的操纵。这种驱动技术克服了一些基本限制,例如使用高压或电化学解决方案进行驱动,为远程光诱导驱动技术开辟了可能性。

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