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首页> 外文期刊>Journal of Applied Physics >The role of contaminants in the variation of adhesion, friction, and electrical conduction properties of carbide-coated scanning probe tips and Pt(111) in ultrahigh vacuum
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The role of contaminants in the variation of adhesion, friction, and electrical conduction properties of carbide-coated scanning probe tips and Pt(111) in ultrahigh vacuum

机译:污染物在超高真空下硬质合金涂层扫描探针尖端和Pt(111)的附着力,摩擦和导电特性变化中的作用

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Scanning probe microscopy was used to investigate the tribological properties of nanoscale tips in contact with a Pt(111) single-crystal surface under ultrahigh vacuum conditions. The tips were coated with a tungsten carbide film, which contained a significant fraction of oxygen. The electrically conductive tip made it possible to alternate between contact measurements and noncontact scanning tunneling microscopy. Several types of interfaces were found depending on the chemical state of the surfaces. The first type is characterized by strong irreversible adhesion followed by material transfer between tip and sample. Low adhesion and no material transfer characterize a second type of contact, which are associated with the presence of passivating adsorbates in both (full passivation) or in one of the two contacting surfaces (half-passivation). Half-passivated contacts in which the clean side is the Pt(111) sample gave rise to periodic stick-slip friction behavior with a period equal to the atomic lattice constant of the Pt(111) surface. Local electrical conductivity measurements show a clear correlation between electronic and friction properties, with ohmic behavior on clean regions of the Pt surface and semiconductor-like behavior on areas covered with adsorbates.
机译:扫描探针显微镜用于研究在超高真空条件下与Pt(111)单晶表面接触的纳米级尖端的摩擦学特性。尖端上涂有碳化钨膜,该膜含有大量的氧气。导电尖端使得可以在接触测量和非接触扫描隧道显微镜之间进行交替。根据表面的化学状态,发现了几种类型的界面。第一种类型的特点是不可逆的附着力强,然后在针尖和样品之间转移材料。低粘附力和无材料转移是第二种接触的特征,这与两种(完全钝化)或两个接触面之一(半钝化)中存在钝化吸附物有关。半钝化接触(其中清洁面为Pt(111)样品)产生了周期性的粘滑摩擦行为,其周期等于Pt(111)表面的原子晶格常数。局部电导率测量表明,电子性能与摩擦性能之间存在明显的相关性,Pt表面清洁区域上的欧姆行为与被吸附物覆盖的区域上的类似半导体的行为有关。

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