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Microstructure and spatial distribution of corrosion products anodically grown on zinc in chloride solutions
Institution:1. French Corrosion Institute, 220 rue Pierre Rivoalon, 29200 Brest, France;2. Institute of Computational Physics, Zurich University of Applied Sciences, Wildbachstrasse 21, 8400 Winterthur, Switzerland;3. Lab-STICC, Université de Bretagne Occidentale, 6 Avenue Le Gorgeu, 29285 Brest, France;4. ETH Zurich, ScopeM, Auguste-Piccard-Hof 1, 8093 Zurich, Switzerland
Abstract:Zinc substrates were electrochemically oxidized in NaCl solution to produce corrosion patinas. XRD, XPS and Raman analyses enabled the identification of simonkolleite and zinc oxide as the patina constituents. FIB-SEM imaging shows that the upper part of the patinas is a network of simonkolleite nanosheets with an open microstructure that is unlikely to act as a significant barrier for corrosion processes. STEM investigations and Raman mapping measurements reveal the presence of a ca. 20–400 nm thin nanoporous ZnO-rich film below the simonkolleite and covering the zinc substrate. Under potentiostatic conditions, the reduced cathodic activity of the patina-covered zinc electrodes is assigned to this nanoporous ZnO layer.
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