Influence of Zn2+ on Corrosion Behavior of Ti in H2SO4 Solution with F−

The influence of Zn2+ on the corrosion behavior of Ti in 1.68 mol L−1 H2SO4 with 0.058 mol L−1 F− solutions was investigated by mass loss measurements, electrochemical tests, and surface observation and analysis. Different concentrations of Zn2+ (0.0002 mol L−1, 0.002 mol L−1, 0.02 mol L−1, 0.2 mol...

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Main Authors: Xinxin LIU, Yoganandan GOVINDARAJ, Masatoshi SAKAIRI
Format: Article
Language:English
Published: The Electrochemical Society of Japan 2025-03-01
Series:Electrochemistry
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Online Access:https://www.jstage.jst.go.jp/article/electrochemistry/93/3/93_24-00121/_html/-char/en
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author Xinxin LIU
Yoganandan GOVINDARAJ
Masatoshi SAKAIRI
author_facet Xinxin LIU
Yoganandan GOVINDARAJ
Masatoshi SAKAIRI
author_sort Xinxin LIU
collection DOAJ
description The influence of Zn2+ on the corrosion behavior of Ti in 1.68 mol L−1 H2SO4 with 0.058 mol L−1 F− solutions was investigated by mass loss measurements, electrochemical tests, and surface observation and analysis. Different concentrations of Zn2+ (0.0002 mol L−1, 0.002 mol L−1, 0.02 mol L−1, 0.2 mol L−1) were added to the solutions to investigate the effect of Zn2+ concentration. The mass loss results showed that the presence of Zn2+ in the corrosive solution could accelerate the corrosion of Ti. From the electrochemical tests results, the corrosion resistance is decreased while increasing the Zn2+ concentration. An adsorption-desorption model of TiFx3−x on Ti was proposed: Zn2+ could inhibit the adsorption process of TiFx3−x and reduce the surface coverage of TiFx3−x, which could provide more active site for Ti to dissolve, resulted in the severe corrosion of Ti.
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publisher The Electrochemical Society of Japan
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spelling doaj-art-a013a8d2bbac4f41b153a6bcdeacb8762025-08-20T02:50:27ZengThe Electrochemical Society of JapanElectrochemistry2186-24512025-03-0193303701003701010.5796/electrochemistry.24-00121electrochemistryInfluence of Zn2+ on Corrosion Behavior of Ti in H2SO4 Solution with F−Xinxin LIU0Yoganandan GOVINDARAJ1Masatoshi SAKAIRI2Graduate School of Engineering, Hokkaido UniversityFaculty of Engineering, Hokkaido UniversityFaculty of Engineering, Hokkaido UniversityThe influence of Zn2+ on the corrosion behavior of Ti in 1.68 mol L−1 H2SO4 with 0.058 mol L−1 F− solutions was investigated by mass loss measurements, electrochemical tests, and surface observation and analysis. Different concentrations of Zn2+ (0.0002 mol L−1, 0.002 mol L−1, 0.02 mol L−1, 0.2 mol L−1) were added to the solutions to investigate the effect of Zn2+ concentration. The mass loss results showed that the presence of Zn2+ in the corrosive solution could accelerate the corrosion of Ti. From the electrochemical tests results, the corrosion resistance is decreased while increasing the Zn2+ concentration. An adsorption-desorption model of TiFx3−x on Ti was proposed: Zn2+ could inhibit the adsorption process of TiFx3−x and reduce the surface coverage of TiFx3−x, which could provide more active site for Ti to dissolve, resulted in the severe corrosion of Ti.https://www.jstage.jst.go.jp/article/electrochemistry/93/3/93_24-00121/_html/-char/enaccelerationcorrosionpassive filmtitanium
spellingShingle Xinxin LIU
Yoganandan GOVINDARAJ
Masatoshi SAKAIRI
Influence of Zn2+ on Corrosion Behavior of Ti in H2SO4 Solution with F−
Electrochemistry
acceleration
corrosion
passive film
titanium
title Influence of Zn2+ on Corrosion Behavior of Ti in H2SO4 Solution with F−
title_full Influence of Zn2+ on Corrosion Behavior of Ti in H2SO4 Solution with F−
title_fullStr Influence of Zn2+ on Corrosion Behavior of Ti in H2SO4 Solution with F−
title_full_unstemmed Influence of Zn2+ on Corrosion Behavior of Ti in H2SO4 Solution with F−
title_short Influence of Zn2+ on Corrosion Behavior of Ti in H2SO4 Solution with F−
title_sort influence of zn2 on corrosion behavior of ti in h2so4 solution with f
topic acceleration
corrosion
passive film
titanium
url https://www.jstage.jst.go.jp/article/electrochemistry/93/3/93_24-00121/_html/-char/en
work_keys_str_mv AT xinxinliu influenceofzn2oncorrosionbehavioroftiinh2so4solutionwithf
AT yoganandangovindaraj influenceofzn2oncorrosionbehavioroftiinh2so4solutionwithf
AT masatoshisakairi influenceofzn2oncorrosionbehavioroftiinh2so4solutionwithf