The early stages of metal (M) electrodeposition (M = Cu, Ag, Pb, Cd and Hg) on columnar and smooth Pt substrates (S) were investigated in acid solutions applying potentiodynamic techniques. At moderate and high potential scanning rates M electrodeposition on columnar substrates yields M domains whic
Complex processes related to the early stages of mercury electrodeposition on Pt electrodes
β Scribed by R.C. Salvarezza; A.J. Arvia
- Publisher
- Elsevier Science
- Year
- 1988
- Tongue
- English
- Weight
- 716 KB
- Volume
- 33
- Category
- Article
- ISSN
- 0013-4686
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β¦ Synopsis
The underpotential deposition and early stages of bulk mercury electrodeposition on platinum from aqueous solutions containing Hg:+ ions were studied by using combined potentiostatic and potentiodynamic techniques. The simultaneous electroreduction of the O-containing surface species and the underpotential deposition of Hg$ + . Ions render an electrode surface containing an O/Hg atom ratio which depends on both the applied potential and Hg: + . Ion concentration in solution. The nucleation and growth of bulk mercury is impeded by the presence of O-containing surface species, whereas it is markedly enhanced by the presence of Hg-adatoms on the electrode surface. A small number of sites are involved in the nucleation process. Apparently defective points at the UPD Hg layer act as preferred sites for nucleation. It takes potentials more negative than the reversible potential of the HgjHg, '+ ion electrode and relatively long electrodeposition times to achieve a degree of surface coverage by mercury atoms greater than 1. It is possible to observe that a fraction of them penetrates into bulk platinum to form a skin-type Hg-Pt alloy.
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The impedance corresponding to charge transfer and storage at p-GaAs electrodes provided with electrodeposited gold is calculated and compared to results of measurements in various electrolyte solutions. It is concluded that the results are in good agreement with the predictions based on a model in