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            Electrochemical SPM study of 2D phase and 3D phase formation of Zn at the ionic liquid / Au(111) interface [online]

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            https://www.ksp.kit.edu/3937300090
            Auteur
            Dogel, Jana
            Language
            English
            Afficher la notice complète
            Résumé
            Zn electrodeposition in the under- (UPD) and overpotential (OPD) ranges by means of in-situ Scanning Tunneling Microscopy (STM) was examined, supported by in-situ cyclic voltammetry and chronoamperometrie. The underpotential deposition of Zn follows a layer-by-layer growth. For the first time the formation of three successive Zn monolayers has been observed in the UPD range. It has been shown, that the UPD of Zn is complicated due to surface alloying. The same growth mechanism extends from the UPD into OPD range until Al bulk deposition sets in. The UPD of Al at 100 mV vs. Zn/Zn(II) is marked by Moiré pattern formation. For the first time in this system the effective tunneling barrier f has been measured by STS. A first insight into the 2D phase formation of electrodeposited Zn at the electrolyte / electrode interface was obtained from STM images at various times and potentials. Before a coherent layer is formed wormlike structures are observed characteristic of spinodal decomposition. This implies a first order phase transition, which has been resolved here for the first time for 2D electrodeposition.
            URI
            https://directory.doabooks.org/handle/20.500.12854/46134
            Keywords
            electrochemistry; spinodal decomposition; STM; zinc; layer growth
            DOI
            10.5445/KSP/1132004
            ISBN
            3937300090
            Publisher
            KIT Scientific Publishing
            Publisher website
            http://www.ksp.kit.edu/
            Publication date and place
            2004
            Classification
            Chemistry
            Review type
            Full text
            Anonymity
            All identities known
            Reviewer type
            Internal editor; External peer reviewer
            Review stage
            Pre-publication
            Open review
            No
            Publish responsibility
            Scientific or Editorial Board
            • Imported or submitted locally

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              This project received funding from the European Union’s Horizon 2020 research and innovation programme under grant agreement No 871069.

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