Zr-O-N coatings for decorative purposes: Study of the system stability by exploration of the deposition parameter space

The deposition of decorative coatings is an excellent solution to modify the surface of any material, particularly the aesthetic finishing, without altering the properties of the substrate. Transition metal oxynitride films are interesting for many applications, due the simple and economic way to tu...

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Veröffentlicht in:Surface & coatings technology 2018-06, Vol.343, p.30-37
Hauptverfasser: da Silva Oliveira, C.I., Martinez-Martinez, D., Cunha, L., Rodrigues, M.S., Borges, J., Lopes, C., Alves, E., Barradas, N.P., Apreutesei, M.
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container_end_page 37
container_issue
container_start_page 30
container_title Surface & coatings technology
container_volume 343
creator da Silva Oliveira, C.I.
Martinez-Martinez, D.
Cunha, L.
Rodrigues, M.S.
Borges, J.
Lopes, C.
Alves, E.
Barradas, N.P.
Apreutesei, M.
description The deposition of decorative coatings is an excellent solution to modify the surface of any material, particularly the aesthetic finishing, without altering the properties of the substrate. Transition metal oxynitride films are interesting for many applications, due the simple and economic way to tune between nitride and oxide bonding. In reactive sputtering, this is done by playing with the flows of N2 and O2, leading to variations of properties (e.g. color) in different directions. In this paper, zirconium is selected as transition metal due to the combination of different characteristics (color, biocompatibility, mechanical properties, corrosion resistance). The literature about Zr-O-N films reveals a confinement of chemical composition. Therefore, the aim of this work is the exploration of the deposition parameter space in order to evaluate the stability of the Zr-O-N system, i.e. verify if the chemical composition of the films still falls in the same range after variation of different deposition parameters. To do that, a series of Zr-O-N films is deposited first at different reactive flows, maintaining the remaining deposition parameters constant. The obtained films can be classified in three different groups, based on their chemical composition, crystalline structure, and film growth. These groups can be successfully explained according to the sputtering characteristics, and correlated with the mechanical properties and color of the films measured by nanoindentation and spectrophotometry respectively. The films deposited by variation of other parameters are introduced afterwards and their characteristics are compared with the reference series. •The Zr-O-N system shows a very stable range of chemical compositions.•Different deposition parameters have been varied to test such stability.•Three regions of films are identified: Zr-ZrN, ZrN- Zr2ON2, disordered Zr-O-N.•The color and mechanical properties of the films follow the phase composition.•A different strategy is needed to avoid the verified chemical stability of the Zr-O-N system.
doi_str_mv 10.1016/j.surfcoat.2017.11.056
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subjects Aesthetic
Aesthetics
Biocompatibility
Chemical composition
Corrosion resistance
Decoration
Decorative
Deposition
Engenharia dos Materiais
Engenharia e Tecnologia
Engineering Sciences
Exploration
Film growth
Materials
Mechanical properties
Nanoindentation
Order parameters
Organic chemistry
Ornamental concrete
Oxynitride
Parameter estimation
Protective coatings
RBS
Science & Technology
Spectrophotometry
Sputtering
Stability analysis
Substrates
Systems stability
XRD
Zirconium
title Zr-O-N coatings for decorative purposes: Study of the system stability by exploration of the deposition parameter space
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