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Oxygen accumulation on metal surfaces investigated by XPS, AES and LEIS, an issue for sputter depth profiling under UHV conditions
Indexado
WoS WOS:000401391900023
Scopus SCOPUS_ID:85016333096
DOI 10.1016/J.APSUSC.2017.03.163
Año 2017
Tipo artículo de investigación

Citas Totales

Autores Afiliación Chile

Instituciones Chile

% Participación
Internacional

Autores
Afiliación Extranjera

Instituciones
Extranjeras


Abstract



Depth profiling using surface sensitive analysis methods in combination with sputter ion etching is a common procedure for thorough material investigations, where clean surfaces free of any contamination are essential. Hence, surface analytic studies are mostly performed under ultra-high vacuum (UHV) conditions, but the cleanness of such UHV environments is usually overrated. Consequently, the current study highlights the in principle known impact of the residual gas on metal surfaces (Fe, Mg, Al, Cr and Zn) for various surface analytics methods, like X-ray photoelectron spectroscopy (XPS), Auger electron spectroscopy (AES) and low-energy ion scattering (LEIS). The investigations with modern, state-of-the-art equipment showed different behaviors for the metal surfaces in UHV during acquisition: (i) no impact for Zn, even after long time, (ii) solely adsorption of oxygen for Fe, slight and slow changes for Cr and (iii) adsorption accompanied by oxide formation for Al and Mg. The efficiency of different counter measures was tested and the acquired knowledge was finally used for ZnMgAl coated steel to obtain accurate depth profiles, which exhibited before serious artifacts when data acquisition was performed in an inconsiderate way. (C) 2017 Elsevier B.V. All rights reserved.

Revista



Revista ISSN
Applied Surface Science 0169-4332

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Disciplinas de Investigación



WOS
Chemistry, Physical
Physics, Condensed Matter
Physics, Applied
Materials Science, Coatings & Films
Scopus
Surfaces, Coatings And Films
Condensed Matter Physics
Surfaces And Interfaces
SciELO
Sin Disciplinas

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Publicaciones WoS (Ediciones: ISSHP, ISTP, AHCI, SSCI, SCI), Scopus, SciELO Chile.

Colaboración Institucional



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Autores - Afiliación



Ord. Autor Género Institución - País
1 Steinberger, R. - Johannes Kepler Univ Linz - Austria
Johannes Kepler Universitat Linz - Austria
Johannes Kepler University Linz - Austria
2 CELEDON-LOPEZ, CARLOS EDUARDO Hombre Johannes Kepler Univ Linz - Austria
Universidad Técnica Federico Santa María - Chile
Johannes Kepler Universitat Linz - Austria
Johannes Kepler University Linz - Austria
3 Bruckner, B. - Johannes Kepler Univ Linz - Austria
Johannes Kepler Universitat Linz - Austria
Johannes Kepler University Linz - Austria
4 Roth, D. - Johannes Kepler Univ Linz - Austria
Johannes Kepler Universitat Linz - Austria
Johannes Kepler University Linz - Austria
5 Duchoslav, J. - Johannes Kepler Univ Linz - Austria
Johannes Kepler Universitat Linz - Austria
Johannes Kepler University Linz - Austria
6 Arndt, M. - Voestalpine Stahl GmbH - Austria
7 Kuernsteiner, P. - Johannes Kepler Univ Linz - Austria
Johannes Kepler Universitat Linz - Austria
Johannes Kepler University Linz - Austria
7 Kürnsteiner, P. - Johannes Kepler Universitat Linz - Austria
Johannes Kepler Univ Linz - Austria
Johannes Kepler University Linz - Austria
8 Steck, T. - Voestalpine Stahl GmbH - Austria
9 Faderl, J. - Voestalpine Stahl GmbH - Austria
10 Riener, C. K. - Voestalpine Stahl GmbH - Austria
11 Angeli, G. - Voestalpine Stahl GmbH - Austria
12 Bauer, Pavol Hombre Johannes Kepler Univ Linz - Austria
Johannes Kepler Universitat Linz - Austria
Johannes Kepler University Linz - Austria
13 Stifter, D. - Johannes Kepler Univ Linz - Austria
Johannes Kepler Universitat Linz - Austria
Johannes Kepler University Linz - Austria

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Financiamiento



Fuente
Austrian Science Fund (FWF)
Austrian Federal Ministry of Science, Research and Economy
National Foundation for Research, Technology and Development

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Agradecimientos



Agradecimiento
Financial support by the Austrian Federal Ministry of Science, Research and Economy, the National Foundation for Research, Technology and Development and the Austrian Science Fund (FWF project P 25704-N2O, NEO-LEIS) is gratefully acknowledged.

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