Robust multifunctional microcapsules with antibacterial and anticorrosion features
Corrosion and biofouling are two common unsolved problems in the marine industry, urging the need of innovative solutions to tackle both problems simultaneously. Herein, the fabrication of multifunctional microcapsules containing 8-hydroxyquinoline (8-HQ)as the corrosion inhibitors and clove oil as...
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sg-ntu-dr.10356-1504262021-06-14T23:53:52Z Robust multifunctional microcapsules with antibacterial and anticorrosion features Chong, Yong Bing Sun, Dawei Zhang, Xin Yue, Chee Yoon Yang, Jinglei School of Mechanical and Aerospace Engineering School of Civil and Environmental Engineering Engineering::Mechanical engineering Microcapsules Clove Oil Corrosion and biofouling are two common unsolved problems in the marine industry, urging the need of innovative solutions to tackle both problems simultaneously. Herein, the fabrication of multifunctional microcapsules containing 8-hydroxyquinoline (8-HQ)as the corrosion inhibitors and clove oil as the natural antimicrobial compound is described to resolve both corrosion and biofouling problems simultaneously. Microcapsules containing 8-HQ and clove oil, featuring good mechanical properties, anticorrosion, and antibacterial properties, were successfully synthesized through in-situ polymerization of melamine-formaldehyde polymer. The fabricated microcapsules show antibacterial properties against Escherichia coli, Vibrio coralliilyticus and E. aestuarii, as revealed from the standard ASTM E2315 time-kill test. Multifunctional coatings with both antibacterial and anticorrosion features were fabricated by incorporating the fabricated microcapsules both onto and into the epoxy coatings. According to the zone inhibition test, the microcapsules-based multifunctional coating possesses antibacterial properties against the seawater bacteria. Manually scratched microcapsules-based multifunctional coatings possess anticorrosion properties, due to the formation of corrosion inhibition layer resulted from the reaction between the released 8-HQ compound and the mild steel substrate. Additionally, after 30 days of immersion in the salt water, the microcapsules-based coatings still possess anticorrosion properties by forming corrosion inhibition layer at the scratched region. Nanyang Technological University We are grateful to the support partially from the Hong Kong University of Science and Technology (Grant #: R9365). Chong acknowledges the research scholarship support from NTU. 2021-06-14T23:53:52Z 2021-06-14T23:53:52Z 2019 Journal Article Chong, Y. B., Sun, D., Zhang, X., Yue, C. Y. & Yang, J. (2019). Robust multifunctional microcapsules with antibacterial and anticorrosion features. Chemical Engineering Journal, 372, 496-508. https://dx.doi.org/10.1016/j.cej.2019.04.139 1385-8947 0000-0003-1681-0246 0000-0002-9413-9016 https://hdl.handle.net/10356/150426 10.1016/j.cej.2019.04.139 2-s2.0-85064805846 372 496 508 en Chemical Engineering Journal © 2019 Elsevier B.V. All rights reserved. |
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Engineering::Mechanical engineering Microcapsules Clove Oil Chong, Yong Bing Sun, Dawei Zhang, Xin Yue, Chee Yoon Yang, Jinglei Robust multifunctional microcapsules with antibacterial and anticorrosion features |
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Corrosion and biofouling are two common unsolved problems in the marine industry, urging the need of innovative solutions to tackle both problems simultaneously. Herein, the fabrication of multifunctional microcapsules containing 8-hydroxyquinoline (8-HQ)as the corrosion inhibitors and clove oil as the natural antimicrobial compound is described to resolve both corrosion and biofouling problems simultaneously. Microcapsules containing 8-HQ and clove oil, featuring good mechanical properties, anticorrosion, and antibacterial properties, were successfully synthesized through in-situ polymerization of melamine-formaldehyde polymer. The fabricated microcapsules show antibacterial properties against Escherichia coli, Vibrio coralliilyticus and E. aestuarii, as revealed from the standard ASTM E2315 time-kill test. Multifunctional coatings with both antibacterial and anticorrosion features were fabricated by incorporating the fabricated microcapsules both onto and into the epoxy coatings. According to the zone inhibition test, the microcapsules-based multifunctional coating possesses antibacterial properties against the seawater bacteria. Manually scratched microcapsules-based multifunctional coatings possess anticorrosion properties, due to the formation of corrosion inhibition layer resulted from the reaction between the released 8-HQ compound and the mild steel substrate. Additionally, after 30 days of immersion in the salt water, the microcapsules-based coatings still possess anticorrosion properties by forming corrosion inhibition layer at the scratched region. |
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School of Mechanical and Aerospace Engineering |
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School of Mechanical and Aerospace Engineering Chong, Yong Bing Sun, Dawei Zhang, Xin Yue, Chee Yoon Yang, Jinglei |
format |
Article |
author |
Chong, Yong Bing Sun, Dawei Zhang, Xin Yue, Chee Yoon Yang, Jinglei |
author_sort |
Chong, Yong Bing |
title |
Robust multifunctional microcapsules with antibacterial and anticorrosion features |
title_short |
Robust multifunctional microcapsules with antibacterial and anticorrosion features |
title_full |
Robust multifunctional microcapsules with antibacterial and anticorrosion features |
title_fullStr |
Robust multifunctional microcapsules with antibacterial and anticorrosion features |
title_full_unstemmed |
Robust multifunctional microcapsules with antibacterial and anticorrosion features |
title_sort |
robust multifunctional microcapsules with antibacterial and anticorrosion features |
publishDate |
2021 |
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https://hdl.handle.net/10356/150426 |
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1703971237701615616 |