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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Boundary Friction of Aromatic Silane Self-Assembled Monolayers Measured with the Surface Forces Apparatus and Friction Force Microscopy
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Boundary Friction of Aromatic Silane Self-Assembled Monolayers Measured with the Surface Forces Apparatus and Friction Force Microscopy

机译:表面力仪器和摩擦力显微镜测量的芳烃硅烷自组装单分子膜的边界摩擦

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摘要

The boundary friction of two different aromatic silane monolayers was measured in a single-asperity contact with the surface forces apparatus (SFA) and friction force microscopy (FFM). The measurements were done in ethanol to significantly reduce the adhesion, which allowed a direct, quantitative comparison of load-dependent friction art the molecular level between surfaces of very different radii. A linear dependence of the friction force on load was obtained, and good agreement was found between friction coefficients measured with the two techniques despite the large differences in contact areas, applied loads, and pressures. The friction forces were lower in systems where both contacting surfaces were covered with a monolayer, and chemically bound monolayers were found to better protect the substrates from wear than physisorbed ones.
机译:在与表面力装置(SFA)和摩擦力显微镜(FFM)的单次粗糙接触中测量了两个不同的芳族硅烷单层的边界摩擦。在乙醇中进行测量以显着降低附着力,从而可以对与载荷有关的摩擦力进行直接,定量的比较,以比较不同半径的表面之间的分子水平。获得了摩擦力对载荷的线性关系,尽管接触面积,施加载荷和压力存在很大差异,但使用这两种技术测得的摩擦系数之间存在良好的一致性。在两个接触面都覆盖有单层的系统中,摩擦力较低,并且发现化学键合的单层比物理吸附的单层更好地保护基材免受磨损。

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