首页> 外文会议>NATO advanced study institute on Micro/Nanotribology and its applications >MECHANISMS FOR SLIDING FRICTION OF SINGLE MOLECULES USING SCANNING TUNNELING MICROSCOPY AT ROOM TEMPERATURE
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MECHANISMS FOR SLIDING FRICTION OF SINGLE MOLECULES USING SCANNING TUNNELING MICROSCOPY AT ROOM TEMPERATURE

机译:使用扫描隧穿显微镜在室温下滑动单分子摩擦的机制

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We discuss the controlled translation of individual molecules across a surface in two dimensions under ultrahigh vacuum conditions using scanning tunneling microscopy (STM). Based on STM observations and STM elastic scattering quantum chemical (ESQC) plus molecular mechanic calculations, a number of key features for translation are elucidated including the role of molecular flexure. In particular we suggest that single molecule motion via slip-stick, rolling, sliding, and jumping actions can be produced and visualized at the single molecule limit. Additionally we observe "wear" at the single molecule level where a ligand is removed through the action of pushing the molecule over a step. These unique insights provide the framework for a bottom-up approach to friction accessible to theoretical modeling.
机译:我们使用扫描隧道显微镜(STM)讨论超高真空条件下的两个尺寸的各个分子的控制翻译。 基于STM观测和STM弹性散射量子化学(ESQC)加分子机械计算,阐明了许多用于翻译的关键特征,包括分子挠曲的作用。 特别地,我们建议在单个分子限制下产生和可视化单个分子运动,通过滑棒,滚动,滑动和跳跃动作产生和可视化。 此外,我们在单个分子水平上观察“磨损”,其中通过将分子在步骤中推动分子除去配体。 这些独特的见解提供了对理论建模可访问的自下而上的摩擦方法的框架。

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