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Anion Adsorption Induced Reversal of Coherency Strain
25
Citations
20
References
2005
Year
Materials EngineeringMaterials ScienceExperimental ResultsEngineeringNanomaterialsNanotechnologySurface ElectrochemistrySurface ScienceApplied PhysicsChemisorptionFirst MonolayerCoherency StrainChemistryStress EvolutionLayered MaterialAnion SensingAdsorptionElectrochemical Interface
Experimental results are presented for stress evolution, in vacuum and electrolyte, for the first monolayer of Cu on Au(111). In electrolyte the monolayer is pseudomorphic and the stress-thickness change is -0.60 N/m, while conventional epitaxy theory predicts a value of +7.76 N/m. In vacuum, the monolayer is incoherent with the underlying gold. Using a combination of first-principles based calculations and molecular dynamic simulations we analyzed these results and demonstrate that in electrolyte, overlayer coherency is maintained owing to anion adsorption.
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