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AuthorAshraf Ismail, Norhan
AuthorMoussa, Abdraman M.
AuthorKahraman, Ramazan
AuthorShakoor, R.A.
Available date2022-10-05T07:23:04Z
Publication Date2022
Publication NameArabian Journal of Chemistry
ResourceScopus
URIhttp://dx.doi.org/10.1016/j.arabjc.2022.104107
URIhttp://hdl.handle.net/10576/34813
AbstractIn the present study, the halloysite nanotubes (HNTs) were loaded with a multicomponent inhibitor (LHNT) comprising mainly benzotriazole (BTA), sodium benzoate (SB), and lauric acid (LA) via the vacuum cycling method. The successful loading of the BTA + LA + SB inhibitor has been confirmed by the TGA, FTIR, and BET analyses. The TGA analysis has determined ? 14% loading of the BTA + LA + SB into the HNTs. Moreover, UV-vis analysis shows that the time and pH-dependent have incremental release of the multicomponent inhibitor in various studied media. The composite coatings (LHNT COAT) were developed by reinforcing the 3 wt% of LHNTs into the epoxy matrix. The corrosion protection of the developed LHNT COAT was enhanced by 99.6% and 98.88% compared to the blank epoxy and unloaded HNT coatings, respectively. This improvement in the corrosion behavior can be attributed to the active release of the multicomponent inhibitor, as was also demonstrated by the electrochemical impedance spectroscopic (EIS) test. It is further predicted that the improved corrosion inhibition efficiency of LHNT COAT may be due to the formation of some components produced from the reaction of the inhibitor components or from the inhibitor reaction with the corrosive medium. The high corrosion resistance of LHNT COAT makes it attuned to several industrial applications.
SponsorThis publication was made possible by NPRP Grant 11S-1226-170132 and NPRP 13S-0120-200116 from the Qatar National Research Fund (a member of the Qatar Foundation). Statements made herein are solely the responsibility of the authors. The authors would like to thank the Central laboratory Unit (CLU), Qatar University, for SEM and TEM analyses.
Languageen
PublisherElsevier B.V.
SubjectCorrosion
EIS
HNTs
Inhibitor
Self-healing
Smart coatings
TitleStudy on the corrosion behavior of polymeric nanocomposite coatings containing halloysite nanotubes loaded with multicomponent inhibitor
TypeArticle
Issue Number9
Volume Number15


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