[1] E. Vazirinasab, R. Jafari, G. Momen, Application of superhydrophobic coatings as a corrosion barrier: a review, Surf. Coat. Technol. 341 (2018) 40-56. [2] N. Jeeva, K. Thirunavukkarasu, J.R. Xavier, Influence of multifunctional graphene oxide and silanized vanadium nitride in polyurethane coatings for the protection of aluminium alloy in aerospace industries, Diam. Relat. Mater. 142 (2024) 110792. [3] Y. Albarqouni, E. Banius, N.H.A. Bakar, A. Abdullah, Uncovering intelligent self-healing coating: synthesis strategies, performance, and evaluation techniques-A review, Int. J. Corros. Scale Inhib. 12 (4) (2023) 1592-1609. [4] S.W. Yap, N. Johari, S.A. Mazlan, S.N. Aqida Syed Ahmad, R. Arifin, N.A. Hassan, M.A.F. Johari, Superhydrophobic zinc oxide/epoxy coating prepared by a one-step approach for corrosion protection of carbon steel, J. Mater. Res. Technol. 25 (2023) 5751-5766. [5] A. Abu Bakar, M.K.F.M. Ali, N.M. Noor, N. Yahaya, M. Ismail, A. Abdullah, Bio-corrosion of carbon steel by sulfate reducing bacteria consortium in oil and gas pipelines, J. Mech. Eng. Sci. 11 (2) (2017) 2592-2600. [6] N.I.H. Salleh, A. Abdullah, Corrosion inhibition of carbon steel using palm oil leaves extract, Indones. J. Chem. 19 (3) (2019) 747. [7] A. Abdullah, E. Banius, A.H. Sofian, L.W. Bin, Evaluation of palm oil leaves extracts as a potential environment friendly corrosion inhibitor for metals. Proceedings of the 2nd Energy Security and Chemical Engineering Congress. Springer Nature Singapore, (2022), pp 87-399. [8] E. Norfatima Engku Dahalan, A. Helmi Sofian, A. Abdullah, N. Md Noor, Corrosion behavior of organic epoxy-xinc coating with fly ash as an extender pigment, Mater. Today Proc. 5 (10) (2018) 21629-21635. [9] V. Puspasari, A. Ridhova, A. Hermawan, M.I. Amal, M.M. Khan, ZnO-based antimicrobial coatings for biomedical applications, Bioprocess Biosyst. Eng. 45 (9) (2022) 1421-1445. [10] Y. Wang, J.W. Liu, T. Wang, L.Z. Liu, C.C. Tian, Y. Cui, W.J. Shao, X. Hua, Y. Shi, Y.X. Wang, Antibacterial properties and mechanism of nanometer zinc oxide composites, Food Packag. Shelf Life 40 (2023) 101167. [11] O.S.I. Fayomi, G. Akande, C. Ofo, Investigation of corrosion resistance and microstructural performance of Zn-MgO-WB composite coating on mild steel, Key Eng. Mater. 886 (2021) 159-167. [12] O.D. Akinfenwa, O.S.I. Fayomi, J.O. Atiba, B.E. Anyaegbuna, Development of starch-modified titanium oxide paired with zinc powder using the electrodeposition technique as a composite superhydrophobic coating for mild steel, Int. J. Adv. Manuf. Technol. 130 (5) (2024) 2847-2854. [13] C.Y. Liu, W.H. Yao, M. Tian, J.N. Wei, Q.L. Song, W.H. Qiao, Mussel-inspired degradable antibacterial polydopamine/silica nanoparticle for rapid hemostasis, Biomaterials 179 (2018) 83-95. [14] M.M. Han, Y. Li, S. Lu, B. Yuan, S.J. Cheng, C.J. Cao, Amyloid protein-biofunctionalized polydopamine nanoparticles demonstrate minimal plasma protein fouling and efficient photothermal therapy, ACS Appl. Mater. Interfaces 14 (11) (2022) 13743-13757. [15] J. Liang, C.H. Xiao, X. Chen, R.X. Gao, S.J. Ding, Porous γ-Fe2O3 spheres coated with N-doped carbon from polydopamine as Li-ion battery anode materials, Nanotechnology 27 (21) (2016) 215403. [16] J.P.B. van Dam, S.T. Abrahami, A. Yilmaz, Y. Gonzalez-Garcia, H. Terryn, J.M.C. Mol, Effect of surface roughness and chemistry on the adhesion and durability of a steel-epoxy adhesive interface, Int. J. Adhes. Adhes. 96 (2020) 102450. [17] Y.Y. Chan, Y.L. Pang, S. Lim, C.W. Lai, A.Z. Abdullah, W.C. Chong, Biosynthesized Fe- and Ag-doped ZnO nanoparticles using aqueous extract of Clitoria ternatea Linn for enhancement of sonocatalytic degradation of Congo red, Environ. Sci. Pollut. Res. Int. 27 (28) (2020) 34675-34691. [18] H. Benhebal, M. Chaib, T. Salmon, J. Geens, A. Leonard, S.D. Lambert, M. Crine, B. Heinrichs, Photocatalytic degradation of phenol and benzoic acid using zinc oxide powders prepared by the Sol-gel process, Alex. Eng. J. 52 (3) (2013) 517-523. [19] Y. Albarqouni, G.A.M. Ali, S.P. Lee, A.R. Mohd-Hairul, H. Algarni, K.F. Chong, Dual-functional single stranded deoxyribonucleic acid for graphene oxide reduction and charge storage enhancement, Electrochim. Acta 399 (2021) 139366. [20] Y.M.Y. Albarqouni, S.P. Lee, G.A.M. Ali, A.S. Ethiraj, H. Algarni, K.F. Chong, Facile synthesis of reduced graphene oxide aerogel in soft drink as supercapacitor electrode, J. Nanostruct. Chem. 12 (3) (2022) 417-427. [21] Y.M.Y. Albarqouni, G.A.M. Ali, S.P. Lee, R. Mohd-Hairul, K.F. Chong, DNA-assisted stabilization of graphene sheets and its application as supercapacitors electrode, Malays. J. Chem. 23 (2) (2021) 55-62. [22] I. Elhamdi, H. Souissi, O. Taktak, J. Elghoul, S. Kammoun, E. Dhahri, B.F.O. Costa, Experimental and modeling study of ZnO: Ni nanoparticles for near-infrared light emitting diodes, RSC Adv. 12 (21) (2022) 13074-13086. [23] S. Tavakoli, M. Kharaziha, S. Nemati, Polydopamine coated ZnO rod-shaped nanoparticles with noticeable biocompatibility, hemostatic and antibacterial activity, Nano Struct. Nano Objects 25 (2021) 100639. [24] N. Nie, F. He, L.Y. Zhang, B. Cheng, Direct Z-scheme PDA-modified ZnO hierarchical microspheres with enhanced photocatalytic CO2 reduction performance, Appl. Surf. Sci. 457 (2018) 1096-1102. [25] Y.Y. Mai, A. Eisenberg, Controlled incorporation of particles into the central portion of vesicle walls, J. Am. Chem. Soc. 132 (29) (2010) 10078-10084. [26] Z.X. Lin, H. Tian, F.G. Xu, X.W. Yang, Y.Y. Mai, X.L. Feng, Facile synthesis of bowl-shaped nitrogen-doped carbon hollow particles templated by block copolymer “kippah vesicles” for high performance supercapacitors, Polym. Chem. 7 (11) (2016) 2092-2098. [27] H.Y. Luo, C.W. Gu, W.H. Zheng, F. Dai, X.L. Wang, Z. Zheng, Facile synthesis of novel size-controlled antibacterial hybrid spheres using silver nanoparticles loaded with poly-dopamine spheres, RSC Adv. 5 (18) (2015) 13470-13477. [28] X.X. Li, Y. Liu, S. Wang, Y.D. Zhang, F.S. Liu, J.J. Han, Mechanism and characterization of polydopamine modified multi-walled carbon nanotubes reinforcement of natural rubber latex composites, Colloids Surf. A Physicochem. Eng. Aspects 631 (2021) 127721. [29] C.L. Hou, H.Z. Yu, C.W. Huang, ZnO: bio-inspired polydopamine functionalized Ti3C2Tx composite electron transport layers for highly efficient polymer solar cells, J. Alloys Compd. 900 (2022) 163381. [30] M. Ahmad, J. Zhu, ZnO based advanced functional nanostructures: synthesis, properties and applications, J. Mater. Chem. 21 (3) (2011) 599-614. [31] M.H. Wang, X.Y. Ma, F. Zhou, Synthesis and characterization of monodispersed spherical ZnO nanocrystals in an aqueous solution, Mater. Lett. 142 (2015) 64-66. [32] X. Yuan, R.C. Yu, Y.L. Du, B. Lei, Zinc oxide grown on boron nitride via polydopamine as nano-pigment to enhance the active/passive protective properties of silicone-epoxy coatings, Prog. Org. Coat. 182 (2023) 107660. [33] A.K. Roy, B. Park, K.S. Lee, S.Y. Park, I. In, Boron nitride nanosheets decorated with silver nanoparticles through mussel-inspired chemistry of dopamine, Nanotechnology 25 (44) (2014) 445603. [34] C.L. Zhang, Y. He, F. Li, H.H. Di, L. Zhang, Y.Q. Zhan, H-BN decorated with Fe3O4 nanoparticles through mussel-inspired chemistry of dopamine for reinforcing anticorrosion performance of epoxy coatings, J. Alloys Compd. 685 (2016) 743-751. [35] C. Bai, F. Wang, Z. Zhao, B. Zhang, Y. Yu, J. Zhang, Mussel-inspired facile fabrication of dense hexagonal boron nitride nanosheet-based coatings for anticorrosion and antifriction applications, Mater. Today Nano 15 (2021) 100129. [36] B. Ramezanzadeh, G. Bahlakeh, M. Ramezanzadeh, Polyaniline-cerium oxide (PAni-CeO2) coated graphene oxide for enhancement of epoxy coating corrosion protection performance on mild steel, Corros. Sci. 137 (2018) 111-126. [37] N.N. Xia, X.M. Xiong, J.H. Wang, M.Z. Rong, M.Q. Zhang, A seawater triggered dynamic coordinate bond and its application for underwater self-healing and reclaiming of lipophilic polymer, Chem. Sci. 7 (4) (2016) 2736-2742. [38] P. Najmi, N. Keshmiri, M. Ramezanzadeh, B. Ramezanzadeh, Synthesis and application of Zn-doped polyaniline modified multi-walled carbon nanotubes as stimuli-responsive nanocarrier in the epoxy matrix for achieving excellent barrier-self-healing corrosion protection potency, Chem. Eng. J. 412 (2021) 128637. [39] D. Blejan, L.M. Muresan, Corrosion behavior of Zn-Ni-Al2O3 nanocomposite coatings obtained by electrodeposition from alkaline electrolytes, Mater. Corros. 64 (5) (2013) 433-438. [40] Y. Zhu, X.X. Shen, X.H. Zhang, Q.J. Xu, Corrosion resistance behavior of zinc substrate treated with rare earth salt passivation, JOM 76 (8) (2024) 3979-3993. [41] M. Kasaeian, E. Ghasemi, B. Ramezanzadeh, M. Mahdavian, G. Bahlakeh, Construction of a highly effective self-repair corrosion-resistant epoxy composite through impregnation of 1H-Benzimidazole corrosion inhibitor modified graphene oxide nanosheets (GO-BIM), Corros. Sci. 145 (2018) 119-134. [42] B. Ramezanzadeh, S.Y. Arman, M. Mehdipour, Anticorrosion properties of an epoxy zinc-rich composite coating reinforced with zinc, aluminum, and iron oxide pigments, J. Coat. Technol. Res. 11 (5) (2014) 727-737. [43] D. Jain, S. Pareek, A. Agarwala, R. Shrivastava, W. Sassi, S.K. Parida, D. Behera, Effect of exposure time on corrosion behavior of zinc-alloy in simulated body fluid solution: Electrochemical and surface investigation, J. Mater. Res. Technol. 10 (2021) 738-751. [44] B. Qian, Z.L. Zheng, M. Michailids, N. Fleck, M. Bilton, Y. Song, G.L. Li, D. Shchukin, Mussel-inspired self-healing coatings based on polydopamine-coated nanocontainers for corrosion protection, ACS Appl. Mater. Interfaces 11 (10) (2019) 10283-10291. [45] I.C.P. Margarit-Mattos, EIS and organic coatings performance: Revisiting some key points, Electrochim. Acta 354 (2020) 136725. [46] H.H. Jasim, Evaluations of potable water tanks epoxy coatings performance using electrochemical impedance spectroscopic method, Al Khwarizmi Eng. J. 13 (2) (2017), https://doi.org/10.22153/kej.2017.12.005. |