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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Combined friction force microscopy and quantum chemical investigation of the tribotronic response at the propylammonium nitrate-graphite interface
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Combined friction force microscopy and quantum chemical investigation of the tribotronic response at the propylammonium nitrate-graphite interface

机译:摩擦力显微镜和量子化学研究在硝酸铵铵-石墨界面上的摩擦学响应

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摘要

The energetic origins of the variation in friction with potential at the propylammonium nitrate-graphite interface are revealed using friction force microscopy (FFM) in combination with quantum chemical simulations. For boundary layer lubrication, as the FFM tip slides energy is dissipated via (1) boundary layer ions and (2) expulsion of near-surface ion layers from the space between the surface and advancing tip. Simulations reveal how changing the surface potential changes the ion composition of the boundary and near surface layer, which controls energy dissipation through both pathways, and thus the friction.
机译:使用摩擦力显微镜(FFM)结合量子化学模拟,揭示了硝酸丙基铵-石墨界面上的摩擦力随电位变化的能量来源。对于边界层润滑,当FFM尖端滑动时,能量通过(1)边界层离子和(2)从表面和行进尖端之间的空间排出近表面离子层而耗散。仿真表明,改变表面电势如何改变边界层和近表面层的离子组成,从而控制通过两个路径的能量耗散,从而控制摩擦。

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