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Structure analysis of topmost layer of CNx after repeated sliding using scanning transmission electron microscopy electron energy-loss spectroscopy

机译:重复滑动后CNx顶层的结构的扫描透射电子显微镜电子能量损失谱分析

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Carbon nitride (CNx) coating has been found to exhibit an ultra-low friction coefficient (less than 0.01) when sliding against a silicon nitride (Si3N4) ball in a dry nitrogen gas (N-2) atmosphere; however, no direct surface analysis of the topmost layer of the ultra-low friction coating has been conducted. In the present study, we examine the wear tracks formed on a CNx coating after a sliding test in both dry N2 and air atmospheres, using scanning transmission electron microscopy combined with electron energy-loss spectroscopy, to elucidate the structure of the surface transition layer quantitatively on the nanometer scale. After the sliding test in dry N-2, a measurement taken from the surface towards the material bulk indicates that the plasmon peak has shifted. We discuss the plasmon peak shift in terms of the density and chemical bonding nature, as a measure of the microscopic structural change. (C) 2016 Elsevier B.V. All rights reserved.
机译:已经发现,在干燥的氮气(N-2)气氛中,氮化碳(CNx)涂层在氮化硅(Si3N4)球上滑动时表现出超低的摩擦系数(小于0.01)。但是,尚未对超低摩擦涂层的最上层进行直接表面分析。在本研究中,我们使用扫描透射电子显微镜结合电子能量损失谱,研究了在干燥的氮气和空气中进行滑动测试后在CNx涂层上形成的磨损轨迹,从而定量地阐明了表面过渡层的结构在纳米尺度上。在干燥的N-2中进行滑动测试后,从表面朝向材料块的测量表明等离激元峰已经移动。我们讨论了密度和化学键性质的等离激元峰位移,作为微观结构变化的量度。 (C)2016 Elsevier B.V.保留所有权利。

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