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Low-friction nanojoint prototype

机译:低摩擦纳米引体原型

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摘要

High surface energy of individual nanostructures leads to high adhesion and static friction that can completely hinder the operation of nanoscale systems with movable parts. For instance, silver or gold nanowires cannot be moved on silicon substrate without plastic deformation. In this paper, we experimentally demonstrate an operational prototype of a low-friction nanojoint. The movable part of the prototype is made either from a gold or silver nano-pin produced by laser-induced partial melting of silver and gold nanowires resulting in the formation of rounded bulbs on their ends. The nano-pin is then manipulated into the inverted pyramid (i-pyramids) specially etched in a Si wafer. Due to the small contact area, the nano-pin can be repeatedly tilted inside an i-pyramid as a rigid object without noticeable deformation. At the same time in the absence of external force the nanojoint is stable and preserves its position and tilt angle. Experiments are performed inside a scanning electron microscope and are supported by finite element method simulations.
机译:单个纳米结构的高表面能导致高附着力和静态摩擦,可以完全阻碍具有可移动部件的纳米级系统的操作。例如,在没有塑性变形的情况下,不能在硅基板上移动银或金纳米线。在本文中,我们通过实验展示了低摩擦纳米时的操作原型。原型的可移动部分由通过激光诱导的银和金纳米线的激光诱导的部分熔化产生的金或银纳米销,导致它们的末端形成圆形灯泡。然后将纳米销操纵到在Si晶片中特别蚀刻的倒金字塔(I-金字塔)中。由于较小的接触面积,纳米销可以在I-金字塔内部重复倾斜,因为没有明显变形的刚性物体。同时在没有外力的情况下,纳米时仍然是稳定的并且保留其位置和倾斜角。在扫描电子显微镜内进行实验,并通过有限元方法模拟支持。

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