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Scaling Law in Carbon Nanotube Electromechanical Devices

机译:碳纳米管机电设备的定标律

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摘要

We report a method for probing electromechanical properties of multiwalled carbon nanotubes (CNTs). This method is based on atomic force microscopy measurements on a doubly clamped suspended CNT electrostatically deflected by a gate electrode. We measure the maximum deflection as a function of the applied gate voltage. Data from different CNTs scale into an universal curve within the experimental accuracy, in agreement with a continuum model prediction. This method and the general validity of the scaling law constitute a very useful tool for designing actuators and in general conducting nanowire-based nanoelectromechanical systems.
机译:我们报告了一种探测多壁碳纳米管(CNT)机电性能的方法。该方法基于原子力显微镜对由栅电极静电偏转的双重夹持的悬浮CNT的测量。我们测量最大挠度与施加的栅极电压的关系。与连续模型预测一致,来自不同CNT的数据在实验精度范围内按比例缩放为通用曲线。此方法和缩放定律的一般有效性构成了用于设计执行器和一般的基于纳米线的纳米机电系统的非常有用的工具。

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