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Synthesis of graphene oxide-based nanofillers and their influence on the anticorrosion performance of epoxy coating in saline medium

机译:石墨烯基纳米填料的合成及其对盐培养基环氧涂层防腐性能的影响

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The present study investigated the anticorrosion performance of epoxy coating by the incorporation of two different functionalized graphene oxides as nanofillers in saline media. GO was functionalized with 2-Aminothiazole (AT) and 2-amino-4-(1-Naphthyl)Thiazole (ANT) and modified compounds were characterized by X-ray diffraction (XRD), Fourier transform infrared spectroscopy (FT-IR), Thermogravimetric analysis (TGA), Raman spectroscopy, and Scanning electron microscopy (SEM). 0.2 wt% of neat epoxy and epoxy nano composites (GO-AT/EP and GO-ANT/EP) were coated on mild steel substrate by a spin coating method and the formation of a protective film on the steel surface was confirmed using SEM, Atomic Force Microscopy (AFM) and contact angle test. The electrochemical impedance spectroscopy was employed to study the corrosion protection properties of nanocomposite coatings in 3.5% NaCl medium. The results signify the better anticorrosion performance of nanocomposite coatings due to their two-dimensional sheet structures, uniform dispersion and exfoliation in the epoxy matrix, hydrophobic nature and stopping up tiny pores properties. The GOANT/EP coating exhibited higher coating resistance (6.598 x 10(7) Omega cm(2)) than GO-AT/EP (1.017 x 10(5) Omega cm(2)) and pure epoxy (1270 Omega cm(2)) coating. The crowded structure of GO-ANT helps in forming highly crosslinked compact epoxy coating and therefore displays excellent corrosion protection efficiency than other coatings.
机译:本研究研究了环氧涂层的防腐性能通过在盐水培养基中掺入两种不同的官能化石墨烯氧化物作为纳米氧化物。通过X射线衍射(XRD),傅里叶变换红外光谱(FT-IR),用2-氨基噻唑(AT)和2-氨基-4-(1-萘基)噻唑(ANT)和改性化合物的官能化。热重分析(TGA),拉曼光谱和扫描电子显微镜(SEM)。通过旋涂法涂布0.2wt%的整齐环氧和环氧纳米复合材料(GO-AT / EP和GO-ANT / EP),使用SEM确认钢表面上的保护膜的形成。原子力显微镜(AFM)和接触角测试。采用电化学阻抗光谱研究3.5%NaCl培养基中纳米复合涂层的腐蚀保护性能。结果表示纳米复合涂层的更好的防腐性能由于它们的二维片结构,均匀的分散体和环氧基质中的脱模,疏水性质和停止微小的孔隙性。涂层/ EP涂层表现出较高的涂层电阻(6.598×10(7)欧米茄CM(2))比Go-AT / EP(1.017 x 10(5)ωcm(2))和纯环氧(1270ωcm(2 )) 涂层。 Go-Ant的拥挤结构有助于形成高度交联的紧凑型环氧树脂涂层,因此显示出比其他涂层的优异的腐蚀保护效率。

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