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Structural lubricity under ambient conditions

机译:环境条件下的结构润滑性

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摘要

Despite its fundamental importance, physical mechanisms that govern friction are poorly understood. While a state of ultra-low friction, termed structural lubricity, is expected for any clean, atomically flat interface consisting of two different materials with incommensurate structures, some associated predictions could only be quantitatively confirmed under ultra-high vacuum (UHV) conditions so far. Here, we report structurally lubric sliding under ambient conditions at mesoscopic (∼4,000–130,000 nm2) interfaces formed by gold islands on graphite. Ab initio calculations reveal that the gold–graphite interface is expected to remain largely free from contaminant molecules, leading to structurally lubric sliding. The experiments reported here demonstrate the potential for practical lubrication schemes for micro- and nano-electromechanical systems, which would mainly rely on an atomic-scale structural mismatch between the slider and substrate components, via the utilization of material systems featuring clean, atomically flat interfaces under ambient conditions.
机译:尽管具有根本的重要性,但控制摩擦的物理机制却知之甚少。对于任何由两种不规则结构的不同材料组成的干净,原子平坦的界面,都有望获得称为结构润滑性的超低摩擦状态,但到目前为止,只有在超高真空(UHV)条件下才能定量确认一些相关的预测。在这里,我们报告了在环境条件下由石墨上的金岛形成的介观界面(约4,000–130,000 nm 2 )的结构上的润滑滑动。从头算计算表明,预期金-石墨界面将基本上不含污染物分子,从而导致结构上的润滑滑动。本文报道的实验证明了微和纳米机电系统实际润滑方案的潜力,该方案主要依靠滑块和基板组件之间原子级的结构失配,这是通过利用具有干净,原子平面界面的材料系统实现的在环境条件下。

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