Effect of Argon-Oxygen Mixing Gas during Magnetron Sputtering on TiO2 Coatings

A reactive r.f magnetron sputtering method was used to deposit titanium dioxide coating on stainless steel substrates without intentional heating or biasing. The purpose of this work is given to study the argon-oxygen mixing gas on the corrosion behavior of TiO2 coatings. The morphology and structur...

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Main Authors: N. Madaoui, L. Bait, K. Kheyar, N. Saoula
Format: Article
Language:English
Published: Hindawi Limited 2017-01-01
Series:Advances in Materials Science and Engineering
Online Access:http://dx.doi.org/10.1155/2017/4926543
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spelling doaj-da0843de4a80493183fbfa8eab0104112020-11-24T20:58:03ZengHindawi LimitedAdvances in Materials Science and Engineering1687-84341687-84422017-01-01201710.1155/2017/49265434926543Effect of Argon-Oxygen Mixing Gas during Magnetron Sputtering on TiO2 CoatingsN. Madaoui0L. Bait1K. Kheyar2N. Saoula3Division Milieux Ionisés et Lasers, Centre de Développement des Technologies Avancées (CDTA), Cité du 20 Août 1956, Baba Hassen, BP no. 17, Alger, AlgeriaDivision Milieux Ionisés et Lasers, Centre de Développement des Technologies Avancées (CDTA), Cité du 20 Août 1956, Baba Hassen, BP no. 17, Alger, AlgeriaFaculté de Physique Université Des Sciences et de la Technologie Houari Boumediene, BP 32, El Alia, Bab Ezzouar, 16111 Alger, AlgeriaDivision Milieux Ionisés et Lasers, Centre de Développement des Technologies Avancées (CDTA), Cité du 20 Août 1956, Baba Hassen, BP no. 17, Alger, AlgeriaA reactive r.f magnetron sputtering method was used to deposit titanium dioxide coating on stainless steel substrates without intentional heating or biasing. The purpose of this work is given to study the argon-oxygen mixing gas on the corrosion behavior of TiO2 coatings. The morphology and structure of the coatings were studied by X-ray diffraction (XRD). Potentiodynamic polarization was used to study the corrosion behavior of the coatings. The results obtained from potentiodynamic polarization curves showed that TiO2 coatings possessed higher corrosion resistance than uncoated substrate.http://dx.doi.org/10.1155/2017/4926543
collection DOAJ
language English
format Article
sources DOAJ
author N. Madaoui
L. Bait
K. Kheyar
N. Saoula
spellingShingle N. Madaoui
L. Bait
K. Kheyar
N. Saoula
Effect of Argon-Oxygen Mixing Gas during Magnetron Sputtering on TiO2 Coatings
Advances in Materials Science and Engineering
author_facet N. Madaoui
L. Bait
K. Kheyar
N. Saoula
author_sort N. Madaoui
title Effect of Argon-Oxygen Mixing Gas during Magnetron Sputtering on TiO2 Coatings
title_short Effect of Argon-Oxygen Mixing Gas during Magnetron Sputtering on TiO2 Coatings
title_full Effect of Argon-Oxygen Mixing Gas during Magnetron Sputtering on TiO2 Coatings
title_fullStr Effect of Argon-Oxygen Mixing Gas during Magnetron Sputtering on TiO2 Coatings
title_full_unstemmed Effect of Argon-Oxygen Mixing Gas during Magnetron Sputtering on TiO2 Coatings
title_sort effect of argon-oxygen mixing gas during magnetron sputtering on tio2 coatings
publisher Hindawi Limited
series Advances in Materials Science and Engineering
issn 1687-8434
1687-8442
publishDate 2017-01-01
description A reactive r.f magnetron sputtering method was used to deposit titanium dioxide coating on stainless steel substrates without intentional heating or biasing. The purpose of this work is given to study the argon-oxygen mixing gas on the corrosion behavior of TiO2 coatings. The morphology and structure of the coatings were studied by X-ray diffraction (XRD). Potentiodynamic polarization was used to study the corrosion behavior of the coatings. The results obtained from potentiodynamic polarization curves showed that TiO2 coatings possessed higher corrosion resistance than uncoated substrate.
url http://dx.doi.org/10.1155/2017/4926543
work_keys_str_mv AT nmadaoui effectofargonoxygenmixinggasduringmagnetronsputteringontio2coatings
AT lbait effectofargonoxygenmixinggasduringmagnetronsputteringontio2coatings
AT kkheyar effectofargonoxygenmixinggasduringmagnetronsputteringontio2coatings
AT nsaoula effectofargonoxygenmixinggasduringmagnetronsputteringontio2coatings
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