Multilayered LDH/Microcapsule Smart Epoxy Coating for Corrosion Protection
| Author | Ismail, Norhan Ashraf | 
| Author | Shakoor, R. A. | 
| Author | Al-Qahtani, Noora | 
| Author | Kahraman, Ramazan | 
| Available date | 2025-10-30T06:00:16Z | 
| Publication Date | 2023-08-29 | 
| Publication Name | ACS Omega | 
| Identifier | http://dx.doi.org/10.1021/acsomega.2c06406 | 
| Citation | Ismail, Norhan Ashraf, R. A. Shakoor, Noora Al-Qahtani, and Ramazan Kahraman. "Multilayered LDH/microcapsule smart epoxy coating for corrosion protection." ACS omega 8, no. 34 (2023): 30838-30849. | 
| Abstract | A multilayered smart epoxy coating for corrosion prevention of carbon steel was developed and characterized. Toward this direction, as a first step, zinc-aluminum nitrate-layered double hydroxide (Zn/Al LDH) was synthesized using the hydrothermal crystallization technique and then loaded with dodecylamine (DOD), which was used as an inhibitor (pH-sensitive). Similarly, the synthesis of the urea-formaldehyde microcapsules (UFMCs) has been carried out using the in-situ polymerization method, and then the microcapsules (LAUFCs) were encapsulated with linalyl acetate (LA) as a self-healing agent. Finally, the loaded Zn/Al LDH (3 wt %) and modified LAUFCs (5 wt %) were reinforced into an epoxy matrix to develop a double-layer coating (DL-EP). For an exact comparison, pre-layer epoxy coatings comprising 3 wt % of the loaded Zn/Al LDH (referred to as LDH-EP), top-layer epoxy coatings comprising 5 wt % linalyl acetate urea-formaldehyde microcapsules (referred to as UFMLA COAT), and a blank epoxy coating (reference coating) were also developed. The developed epoxy coatings were characterized using various techniques such as XRD, XPS, BET, TGA, FTIR, EIS, etc. Electrochemical tests performed on the synthesized coatings indicate that the DL-EP demonstrates improved self-healing properties compared to LDH-EP and UFMLA COAT. | 
| Sponsor | This 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. | 
| Language | en | 
| Publisher | American Chemical Society | 
| Subject | Coating materials Electrochemistry Inhibitors Inorganic compounds Oxidation | 
| Type | Article | 
| Issue Number | 34 | 
| Volume Number | 8 | 
| ESSN | 30838-30849 | 
| ESSN | 2470-1343 | 
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