Formation of small metal clusters by ion bombardment of single crystal surfaces
- 15 August 1978
- journal article
- research article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 69 (4), 1440-1444
- https://doi.org/10.1063/1.436767
Abstract
The mechanism for the formation of small metal clusters ejected from an ion bombarded metal surface is examined in detail. The analysis is performed by classical trajectory methods which determine the positions and momenta of all particles in a model microcrystallite as a function of time. The calculation utilizes pair potentials for Cu derived from elastic constants of the solid and is performed for 600 eV Ar+ ion at normal incidence to the crystal. The results show that cluster species do not leave the surface as intact parts of the solid but form in a region above the surface. A trajectory for Cu5 formation is traced in detail showing a typical mechanism which is valid for Cun formation where n?7.Keywords
This publication has 18 references indexed in Scilit:
- Electronic Structure of Catalytic Metal Clusters Studied by X-Ray Photoemission SpectroscopyPhysical Review Letters, 1977
- Theory of ultraviolet spectra for Ni2 and Ni3 and hypothesis for argon matrix frequency shifts for Ni atomsThe Journal of Chemical Physics, 1977
- Heterogeneous Catalysis: Some Recent DevelopmentsScience, 1977
- Developments in secondary ion mass spectroscopy and applications to surface studiesSurface Science, 1975
- X-ray photoelectron spectroscopic binding energy shifts due to matrix in alloys and small supported metal particlesChemical Physics Letters, 1975
- Vapor deposition of silver, gold and palladium on carbon and silicon dioxide in ion-pumped vacuumThin Solid Films, 1974
- Supported ?bimetallic cluster? catalystsJournal of Catalysis, 1973
- Computer simulation of sputtering IIRadiation Effects, 1973
- Clusters sputtered from tungstenRadiation Effects, 1972
- Alternations in the secondary emission of molecular ions from noble metalsJournal of Physics and Chemistry of Solids, 1971