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Carbon nanotube linear bearing nanoswitches

机译:碳纳米管线性轴承纳米开关

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We exploit the remarkable low-friction bearing capabilities of multiwalled carbon nanotubes (MWNTs) to realize nanoelectromechanical switches. Our switches consist of two open-ended MWNT segments separated by a nanometer-scale gap. Switching occurs through electrostatically actuated sliding of the inner nanotube shells to close the gap, producing a conducting ON state. For double-walled nanotubes in particular, a gate voltage can restore the insulating OFF state. Acting as a nonvolatile memory element capable of several switching cycles, our devices are straightforward to implement, self-aligned, and do not require complex fabrication or geometries, allowing for convenient scalability.
机译:我们利用多壁碳纳米管(MWNT)出色的低摩擦承载能力来实现纳米机电开关。我们的开关由两个开路的MWNT段组成,这些段由纳米级的间隙隔开。通过内部纳米管壳的静电驱动滑动来进行切换,以闭合间隙,从而产生导通状态。特别是对于双壁纳米管,栅极电压可以恢复绝缘截止状态。作为具有几个开关周期能力的非易失性存储元件,我们的设备易于实现,自我对准,并且不需要复杂的制造或几何形状,从而具有便利的可扩展性。

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