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Chemical effects on the sliding friction of Ag and Au(111)

机译:化学作用对Ag和Au(111)的滑动摩擦的影响

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Abstract We have investigated the sliding friction behavior of metallic couples with different enthalpy of mixing or reaction by friction force microscopy. Comparing the friction behavior of miscible and immiscible couples we find that in the first case friction is governed by adhesion while the shear strength is low ( τ = 3–6 MPa). In the latter case of immiscible couples, adhesion is found to be low and the shear strength is large ( τ ≈ 70 MPa). Statistical analysis of atomic stick-slip images recorded on an Au(111) surface with tips of different affinities with gold allows for a deeper understanding of our results. The periodicity of atomic stick-slip images corresponds to the interatomic distance of gold for immiscible counter-bodies. In contrast, for a reactive couple the periodicity of atomic stick-slip significantly differs from the gold interatomic distance and may correspond to the structural length of an ordered intermediate phase at the tip-surface interface.
机译:摘要我们通过摩擦力显微镜研究了混合或反应焓不同的金属偶的滑动摩擦行为。比较可混溶和不可混溶的摩擦力,我们发现在第一种情况下,摩擦力是由附着力控制的,而抗剪强度较低(τ= 3–6 MPa)。在后一种不混溶的情况下,发现粘附力低,剪切强度大(τ≈70 MPa)。对Au(111)表面记录的原子粘滑图像的统计分析,其尖端具有与金的不同亲和力,从而可以更深入地了解我们的结果。原子粘滑图像的周期性对应于互不相容的counter体的金原子间距离。相反,对于反应性偶合,原子粘滑的周期性与金原子间的距离显着不同,并且可能对应于尖端表面界面处有序中间相的结构长度。

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