Corrosion protection of aluminum by smart coatings containing layered double hydroxide (LDH) nanocontainers

In this study, the LDH containing a kind of green inhibitor (sodium molybdate) was synthesized and utilized in a poly-vinyl alcohol (PVA) base coating applied on the aluminum (5054 series) surface. After evaluating the LDH performance, the inhibitor release from the LDH crystals was examined by chan...

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Main Authors: Iman Imanieh, Abdollah Afshar
Format: Article
Language:English
Published: Elsevier 2019-05-01
Series:Journal of Materials Research and Technology
Online Access:http://www.sciencedirect.com/science/article/pii/S2238785417305720
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spelling doaj-2370babcdca743559af85f3550be69ef2020-11-25T03:34:07ZengElsevierJournal of Materials Research and Technology2238-78542019-05-018330043023Corrosion protection of aluminum by smart coatings containing layered double hydroxide (LDH) nanocontainersIman Imanieh0Abdollah Afshar1Corresponding author.; Department of Materials Science and Engineering, Sharif University of Technology, P.O. Box 11365-9466, Tehran, Islamic Republic of IranDepartment of Materials Science and Engineering, Sharif University of Technology, P.O. Box 11365-9466, Tehran, Islamic Republic of IranIn this study, the LDH containing a kind of green inhibitor (sodium molybdate) was synthesized and utilized in a poly-vinyl alcohol (PVA) base coating applied on the aluminum (5054 series) surface. After evaluating the LDH performance, the inhibitor release from the LDH crystals was examined by changing significant parameters like MII/MIII (the molar ratio of divalent ions into trivalent ions), pH, aging time and temperature. In order to find the kinetic release of intercalated inhibitor a prediction model was introduced in 3.5% NaCl solution. The model expressed that the pH as the processing parameter has special effect on the kinetic releasing of the inhibitor. It can enhance the amount of released inhibitor up to 6 times larger due to its effect on the LDH morphology and structure. Also MII/MIII has serious effect on the amount of intercalated inhibitor and the release rate. In fact, the ratio alteration can affect the amount of final released inhibitor by a factor of 2 and its interaction with the pH is noticeable. The whole mechanism of releasing was recognized as Fickian diffusion and the released data were well fitted with the Weibull model. Corrosion measurements show the mechanism activation of the synthesized smart coating and improvement of the corrosion properties (the polarization resistance has been enhanced more than 3 times) in compare with the regular coatings. More LDH in the coating network result in better resistance (39,250 Ω cm−1) to corrosion for the produced coating up to approximately 5.7 wt% of the Cl− ions. Keywords: Aluminum, Smart coating, Layered double hydroxide, Sodium molybdate, Kinetic releasehttp://www.sciencedirect.com/science/article/pii/S2238785417305720
collection DOAJ
language English
format Article
sources DOAJ
author Iman Imanieh
Abdollah Afshar
spellingShingle Iman Imanieh
Abdollah Afshar
Corrosion protection of aluminum by smart coatings containing layered double hydroxide (LDH) nanocontainers
Journal of Materials Research and Technology
author_facet Iman Imanieh
Abdollah Afshar
author_sort Iman Imanieh
title Corrosion protection of aluminum by smart coatings containing layered double hydroxide (LDH) nanocontainers
title_short Corrosion protection of aluminum by smart coatings containing layered double hydroxide (LDH) nanocontainers
title_full Corrosion protection of aluminum by smart coatings containing layered double hydroxide (LDH) nanocontainers
title_fullStr Corrosion protection of aluminum by smart coatings containing layered double hydroxide (LDH) nanocontainers
title_full_unstemmed Corrosion protection of aluminum by smart coatings containing layered double hydroxide (LDH) nanocontainers
title_sort corrosion protection of aluminum by smart coatings containing layered double hydroxide (ldh) nanocontainers
publisher Elsevier
series Journal of Materials Research and Technology
issn 2238-7854
publishDate 2019-05-01
description In this study, the LDH containing a kind of green inhibitor (sodium molybdate) was synthesized and utilized in a poly-vinyl alcohol (PVA) base coating applied on the aluminum (5054 series) surface. After evaluating the LDH performance, the inhibitor release from the LDH crystals was examined by changing significant parameters like MII/MIII (the molar ratio of divalent ions into trivalent ions), pH, aging time and temperature. In order to find the kinetic release of intercalated inhibitor a prediction model was introduced in 3.5% NaCl solution. The model expressed that the pH as the processing parameter has special effect on the kinetic releasing of the inhibitor. It can enhance the amount of released inhibitor up to 6 times larger due to its effect on the LDH morphology and structure. Also MII/MIII has serious effect on the amount of intercalated inhibitor and the release rate. In fact, the ratio alteration can affect the amount of final released inhibitor by a factor of 2 and its interaction with the pH is noticeable. The whole mechanism of releasing was recognized as Fickian diffusion and the released data were well fitted with the Weibull model. Corrosion measurements show the mechanism activation of the synthesized smart coating and improvement of the corrosion properties (the polarization resistance has been enhanced more than 3 times) in compare with the regular coatings. More LDH in the coating network result in better resistance (39,250 Ω cm−1) to corrosion for the produced coating up to approximately 5.7 wt% of the Cl− ions. Keywords: Aluminum, Smart coating, Layered double hydroxide, Sodium molybdate, Kinetic release
url http://www.sciencedirect.com/science/article/pii/S2238785417305720
work_keys_str_mv AT imanimanieh corrosionprotectionofaluminumbysmartcoatingscontaininglayereddoublehydroxideldhnanocontainers
AT abdollahafshar corrosionprotectionofaluminumbysmartcoatingscontaininglayereddoublehydroxideldhnanocontainers
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