Publication | Open Access
Microscopic Insights into the Sputtering of Thin Organic Films on Ag{111} Induced by C<sub>60</sub> and Ga Bombardment
89
Citations
44
References
2005
Year
EngineeringImpact (Mechanics)Computational ChemistryThin Film Process TechnologyChemistryChemical DepositionMolecular DynamicsMeteorite ImpactThin Organic FilmsHypervelocity ImpactIon EmissionCluster BombardmentThin Film ProcessingMaterials ScienceGa BombardmentPhysicsC60 ProjectilesAtomic PhysicsPhysical ChemistryMicroscopic InsightsSurface CharacterizationNatural SciencesSurface AnalysisSurface ScienceApplied PhysicsHigh YieldThin FilmsChemical KineticsMolecular Fragmentation
Molecular dynamics computer simulations have been employed to model the bombardment of Ag{111} covered with three layers of C6H6 by 15 keV Ga and C60 projectiles. The study is aimed toward examining the mechanism by which molecules are desorbed from surfaces by energetic cluster ion beams and toward elucidating the differences between cluster bombardment and atom bombardment. The results show that the impact of the cluster on the benzene-covered surface leads to molecular desorption during the formation of a mesoscopic scale impact crater via a catapulting mechanism. Because of the high yield of C6H6 with both Ga and C60, the yield enhancement is observed to be consistent with related experimental observations. Specific energy and angle distributions are shown to be associated with the catapult mechanism.
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