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Phosphate Coatings Enriched with Copper on Titanium Substrate Fabricated Via DC-PEO Process

The present paper covers the possible ways to fabricate advanced porous coatings that are enriched in copper on a titanium substrate through Direct Current Plasma Electrolytic Oxidation (DC-PEO) with voltage control, in electrolytes made of concentrated orthophosphoric acid with the addition of copp...

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Autores principales: Rokosz, Krzysztof, Hryniewicz, Tadeusz, Kacalak, Wojciech, Tandecka, Katarzyna, Raaen, Steinar, Gaiaschi, Sofia, Chapon, Patrick, Malorny, Winfried, Matýsek, Dalibor, Pietrzak, Kornel, Dudek, Łukasz
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7142448/
https://www.ncbi.nlm.nih.gov/pubmed/32182998
http://dx.doi.org/10.3390/ma13061295
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author Rokosz, Krzysztof
Hryniewicz, Tadeusz
Kacalak, Wojciech
Tandecka, Katarzyna
Raaen, Steinar
Gaiaschi, Sofia
Chapon, Patrick
Malorny, Winfried
Matýsek, Dalibor
Pietrzak, Kornel
Dudek, Łukasz
author_facet Rokosz, Krzysztof
Hryniewicz, Tadeusz
Kacalak, Wojciech
Tandecka, Katarzyna
Raaen, Steinar
Gaiaschi, Sofia
Chapon, Patrick
Malorny, Winfried
Matýsek, Dalibor
Pietrzak, Kornel
Dudek, Łukasz
author_sort Rokosz, Krzysztof
collection PubMed
description The present paper covers the possible ways to fabricate advanced porous coatings that are enriched in copper on a titanium substrate through Direct Current Plasma Electrolytic Oxidation (DC-PEO) with voltage control, in electrolytes made of concentrated orthophosphoric acid with the addition of copper(II) nitrate(V) trihydrate. In these studies, solutions containing from 0 to 650 g salt per 1 dm(3) of acid and anodic voltages from 450 V up to 650 V were used. The obtained coatings featuring variable porosity could be best defined by the three-dimensional (3D) parameter Sz, which lies in the range 9.72 to 45.18 μm. The use of copper(II) nitrate(V) trihydrate in the electrolyte, resulted, for all cases, in the incorporation of the two oxidation forms, i.e., Cu(+) and Cu(2+) into the coatings. Detailed X-Ray Photoelectron Spectroscopy (XPS) studies layers allowed for stating that the percentage of copper in the surface layer of the obtained coatings was in the range of 0.24 at% to 2.59 at%. The X-Ray Diffraction (XRD) studies showed the presence of copper (α-Cu(2)P(2)O(7), and Cu(3)(PO(4))(2)) and titanium (TiO(2)-anatase, TiO(3), TiP(2)O(7), and Ti(0.73)O(0.91)) compounds in coatings. From Energy-Dispersive X-Ray Spectroscopy (EDS) and XPS studies, it was found that the Cu/P ratio increases with the increase of voltage and the amount of salt in the electrolyte. The depth profile analysis by Glow-Discharge Optical Emission Spectroscopy (GDOES) method showed that a three-layer model consisting of a top porous layer, a semi-porous layer, and a transient/barrier layer might describe the fabricated coatings.
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spelling pubmed-71424482020-04-15 Phosphate Coatings Enriched with Copper on Titanium Substrate Fabricated Via DC-PEO Process Rokosz, Krzysztof Hryniewicz, Tadeusz Kacalak, Wojciech Tandecka, Katarzyna Raaen, Steinar Gaiaschi, Sofia Chapon, Patrick Malorny, Winfried Matýsek, Dalibor Pietrzak, Kornel Dudek, Łukasz Materials (Basel) Article The present paper covers the possible ways to fabricate advanced porous coatings that are enriched in copper on a titanium substrate through Direct Current Plasma Electrolytic Oxidation (DC-PEO) with voltage control, in electrolytes made of concentrated orthophosphoric acid with the addition of copper(II) nitrate(V) trihydrate. In these studies, solutions containing from 0 to 650 g salt per 1 dm(3) of acid and anodic voltages from 450 V up to 650 V were used. The obtained coatings featuring variable porosity could be best defined by the three-dimensional (3D) parameter Sz, which lies in the range 9.72 to 45.18 μm. The use of copper(II) nitrate(V) trihydrate in the electrolyte, resulted, for all cases, in the incorporation of the two oxidation forms, i.e., Cu(+) and Cu(2+) into the coatings. Detailed X-Ray Photoelectron Spectroscopy (XPS) studies layers allowed for stating that the percentage of copper in the surface layer of the obtained coatings was in the range of 0.24 at% to 2.59 at%. The X-Ray Diffraction (XRD) studies showed the presence of copper (α-Cu(2)P(2)O(7), and Cu(3)(PO(4))(2)) and titanium (TiO(2)-anatase, TiO(3), TiP(2)O(7), and Ti(0.73)O(0.91)) compounds in coatings. From Energy-Dispersive X-Ray Spectroscopy (EDS) and XPS studies, it was found that the Cu/P ratio increases with the increase of voltage and the amount of salt in the electrolyte. The depth profile analysis by Glow-Discharge Optical Emission Spectroscopy (GDOES) method showed that a three-layer model consisting of a top porous layer, a semi-porous layer, and a transient/barrier layer might describe the fabricated coatings. MDPI 2020-03-13 /pmc/articles/PMC7142448/ /pubmed/32182998 http://dx.doi.org/10.3390/ma13061295 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Rokosz, Krzysztof
Hryniewicz, Tadeusz
Kacalak, Wojciech
Tandecka, Katarzyna
Raaen, Steinar
Gaiaschi, Sofia
Chapon, Patrick
Malorny, Winfried
Matýsek, Dalibor
Pietrzak, Kornel
Dudek, Łukasz
Phosphate Coatings Enriched with Copper on Titanium Substrate Fabricated Via DC-PEO Process
title Phosphate Coatings Enriched with Copper on Titanium Substrate Fabricated Via DC-PEO Process
title_full Phosphate Coatings Enriched with Copper on Titanium Substrate Fabricated Via DC-PEO Process
title_fullStr Phosphate Coatings Enriched with Copper on Titanium Substrate Fabricated Via DC-PEO Process
title_full_unstemmed Phosphate Coatings Enriched with Copper on Titanium Substrate Fabricated Via DC-PEO Process
title_short Phosphate Coatings Enriched with Copper on Titanium Substrate Fabricated Via DC-PEO Process
title_sort phosphate coatings enriched with copper on titanium substrate fabricated via dc-peo process
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7142448/
https://www.ncbi.nlm.nih.gov/pubmed/32182998
http://dx.doi.org/10.3390/ma13061295
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