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A Nanogripper Employing Aligned Multiwall Carbon Nanotubes

机译:使用对齐的多壁碳纳米管的纳米夹具。

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摘要

Nanogripper structures using aligned multiwall carbon nanotubes (MWCNTs) are demonstrated and their electromechanical properties have been studied in this paper. The balance of electrostatic force, together with elastostatic force and van der Waals force determines the driving conditions. A triode structure drastically reduces the bias between two moving parts, which consist of MWCNTs. Low bias also enables low power consumption as well as the reduction of electrical damage to an object. The moving parts can keep the same state without any applied biases after bending and connection. This also enables power saving during driving. The device can be a base structure for various nanorobotic or other nanoelectromechanical devices.
机译:演示了使用取向多壁碳纳米管(MWCNT)的纳米抓取器结构,并研究了其机电性能。静电力的平衡以及弹力和范德华力共同决定了行驶条件。三极管结构极大地减少了由MWCNT组成的两个运动部件之间的偏压。低偏置还可以降低功耗,并减少对物体的电损坏。在弯曲和连接后,运动部件可以保持相同的状态,而不会施加任何偏压。这也可以在行驶期间节省功率。该装置可以是用于各种纳米机器人或其他纳米机电装置的基础结构。

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