Overpotential deposition of Ag monolayer and bilayer on Au(1 1 1) mediated by Pb adlayer underpotential deposition/stripping cycles |
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Authors: | J. X. Wang B. M. Ocko R. R. Adzic |
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Affiliation: | a Department of Materials Science, Brookhaven National Laboratory, Building 555, Upton, NY 11733, USA b Department of Physics, Brookhaven National Laboratory, Upton, NY 11973, USA |
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Abstract: | Ultra-thin Ag films on the Au(1 1 1) surface were prepared via overpotential deposition (OPD) in the presence of Pb2+ ions. By carrying out repetitive Pb adlayer underpotential deposition (UPD) and stripping cycles during Ag bulk deposition, the two-dimensional growth of Ag films was significantly enhanced in high OPD. The Ag monolayer sample was made by comparing the voltammetry curves, in which the signatures for Pb adlayer UPD on Au(1 1 1) changed to that on Ag(1 1 1). As demonstrated by the X-ray specular reflectivity measurements, nearly complete monolayer and bilayer films can be made with optimized deposition procedures. On subatomic scale, however, we found that these films have significant higher root-mean-square displacement amplitudes than those underpotentially deposited Ag monolayer and bilayer on either Au(1 1 1) or Pt(1 1 1). |
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Keywords: | Growth Surface structure, morphology, roughness, and topography X-ray scattering, diffraction, and reflection |
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