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Corrosion protection of fluorzirconate glasses coated by a layer of surface modified tin oxide nanoparticles

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The protection efficiency against water corrosion of fluorozirconate glass, ZBLAN, dip-coated by nanocrystalline tin oxide film containing the organic molecule Tiron® was investigated by X-ray photoelectron spectroscopy (XPS) and atomic force microscopy (AFM). The chemical bonding structure of the surface region and morphology were studied before and after two water exposure periods of 5 and 30 min. The results of the analysis for the as-grown sample revealed a SnO1.6 phase containing carbon and sulfur, related to Tiron®, and traces of elements related to ZBLAN (Zr, F, Ba). This fact and the clear evidence of the presence of tin oxifluoride specie (SnOxF y) indicates a diffusion of the glass components into the porous coating. After water exposure, the increase of the oxygen concentration accompanied by a strong increase of Zr, F, Ba and Na content is interpreted as filling of the nanopores of the film by glass compounds. The formation of a compact protective layer is supported by the morphological changes observed by AFM. © 2005 Elsevier B.V. All rights reserved.

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Corrosion, Tin oxide, X-ray photoelectron spectroscopy (XPS), Zirconium, Chemical bonds, Glass, Microstructure, Nanostructured materials, Thin films, X ray photoelectron spectroscopy, Zirconium compounds, Fluorozirconate glass, Porous coating, Water corrosion, Corrosion protection

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Inglês

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Thin Solid Films, v. 502, n. 1-2, p. 94-98, 2006.

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