Journal of the American Chemical Society · 2002 · 223 citations · 27 references
Tribological CoatingEngineeringMechanical EngineeringHydrogen TerminationNanotribologyMolecular DynamicsFriction ControlSurface ProcessingCounterface SaturationSliding WearHydrogen-terminated DiamondThin Film ProcessingMolecular-scale TribologyMaterials SciencePhysical ChemistryAmorphous Carbon CoatingsTribological PropertyDiamond-like CarbonFilm ThicknessSurface ScienceApplied PhysicsTribocorrosion
Classical molecular dynamics simulations have been conducted to investigate the atomic-scale friction and wear when hydrogen-terminated diamond (111) counterfaces are in sliding contact with diamond (111) surfaces coated with amorphous, hydrogen-free carbon films. Two films, with approximately the same ratio of sp(3)-to-sp(2) carbon, but different thicknesses, have been examined. Both systems give a similar average friction in the load range examined. Above a critical load, a series of tribochemical reactions occur resulting in a significant restructuring of the film. This restructuring is analogous to the "run-in" observed in macroscopic friction experiments and reduces the friction. The contribution of adhesion between the probe (counterface) and the sample to friction was examined by varying the saturation of the counterface. Decreasing the degree of counterface saturation, by reducing the hydrogen termination, increases the friction. Finally, the contribution of long-range interactions to friction was examined by using two potential energy functions that differ only in their long-range forces to examine friction in the same system.
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William C. Swope, Hans Christian Andersen, Peter H. Berens et al. · The Journal of Chemical Physics · 1982 · 3.9K citations