Konicek A R, Grierson D S, Gilbert P U P A, Sawyer W G, Sumant A V, Carpick R W
Department of Physics & Astronomy, University of Pennsylvania, Philadelphia, PA, 19104, USA.
Phys Rev Lett. 2008 Jun 13;100(23):235502. doi: 10.1103/PhysRevLett.100.235502. Epub 2008 Jun 11.
The impressively low friction and wear of diamond in humid environments is debated to originate from either the stability of the passivated diamond surface or sliding-induced graphitization/rehybridization of carbon. We find ultralow friction and wear for ultrananocrystalline diamond surfaces even in dry environments, and observe negligible rehybridization except for a modest, submonolayer amount under the most severe conditions (high load, low humidity). This supports the passivation hypothesis, and establishes a new regime of exceptionally low friction and wear for diamond.
在潮湿环境中,金刚石令人印象深刻的低摩擦和低磨损被认为源于钝化金刚石表面的稳定性或滑动诱导的碳石墨化/再杂化。我们发现,即使在干燥环境中,超纳米晶金刚石表面也具有超低摩擦和低磨损,并且除了在最苛刻条件下(高负载、低湿度)有少量亚单层的再杂化外,观察到的再杂化可以忽略不计。这支持了钝化假说,并确立了金刚石具有极低摩擦和低磨损的新机制。