首页> 外文期刊>Chemical engineering journal >Fabrication and characterization of novel p-Phenylamine-N(4-chloro salicylaldenemine) ligand and its metal complexes and evaluation their anti-corrosion and chemical resistance properties in epoxy/SiO2 nanocomposite for steel surface coating
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Fabrication and characterization of novel p-Phenylamine-N(4-chloro salicylaldenemine) ligand and its metal complexes and evaluation their anti-corrosion and chemical resistance properties in epoxy/SiO2 nanocomposite for steel surface coating

机译:新型对苯胺-N(4-氯水杨醛丁胺)配体及其金属配合物的制备及表征及其金属配合物及其在钢结构涂层中的环氧/ SiO2纳米复合材料中的抗腐蚀和耐化学性特性

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摘要

Schiff base metal complex/epoxy nanocomposite coating engineering is considered a vital corrosion protection model for steel surface applications. To support this concept, several metal (Cr(III), Co(II), Ni(II), Cu(II) and Zr (IV)) complexes of Schiff base ligand named p-Phenylamine-N(4-chloro salicylaldenemine) (HL) were synthesized. The HL was chelated with metal ions as a bidentate manner through NO donor atoms with 1:2 (metal:HL) molar ratio and it was detected by microanalytical procedure. The resulting metal chelates of HL were fully characterized using the conductivity and magnetic moment measurements, UV-Vis, FT-IR, H-1 NMR, XRD and TG-DTG analysis. Transmission electron microscope (TEM) and X-ray diffraction (XRD) techniques were accomplished for the silica nanoparticles characterization. Different surface-modified epoxy/SiO2 nanocomposite coating formulations with HL and its metal complexes were prepared without any compatibility problems. The anti-corrosion behavior of the epoxy nanocomposite coated films versus unmodified conventional epoxy was clarified by salt spray accelerated corrosion test. The obtained results demonstrated a considerable improvement in the rust grade, size and frequency of blistering, and adhesion strength of surface modified Ni(II) and Cr(III) complexes nanocomposite coated steel films at the same loading level. To confirm the previous concept, SEM morphology survey and FT-IR chemical structure characterizations for the employed cured coated films after the direct exposure to salt spray aggressive fog were investigated. Chemical immersion strategy was performed to check the acids and alkali resistances of nanocomposite coated films against conventional epoxy. The perfect protective behavior of the Ni(II) and Cr(III) complexes may be attributed to their highly effective magnetic moment (mu(eff)) which leads to enhancing the cross-linking density through the coating layer, thereby enhancing the adhesion between the steel substrate and epoxy matrix.
机译:Schiff Base金属络合物/环氧纳米复合涂料工程被认为是钢结构应用的重要腐蚀保护模型。为了支持这种概念,几种金属(Cr(III),CO(II),Ni(II),Cu)和Zr(IV)),Schiff碱配体的络合物称为对苯胺-N(4-氯水杨丙烯酸) (HL)被合成。通过没有1:2(金属:HL)摩尔比的供体原子,将HL用金属离子作为二齿的方式螯合,并且通过微分析程序检测。使用电导率和磁矩测量,UV-Vis,FT-IR,H-1 NMR,XRD和TG-DTG分析完全表征HL的金属螯合物。为二氧化硅纳米粒子表征完成透射电子显微镜(TEM)和X射线衍射(XRD)技术。制备具有H1及其金属配合物的不同表面改性的环氧/ SiO2纳米复合涂料制剂,而无需任何相容性问题。通过盐喷雾加速腐蚀试验阐明了环氧纳米复合涂层膜与未改性的常规环氧树脂的抗腐蚀行为。所得结果表明,生锈等级,凹陷尺寸和频率的显着改善,以及表面改性Ni(II)和Cr(III)络合物的粘附强度在相同的负载水平下的纳米复合涂覆的钢膜。为了确认先前的概念,SEM形态调查和FT-IR化学结构在直接暴露于盐雾喷雾侵蚀性雾后的使用固化涂层薄膜。进行化学浸渍策略以检查纳米复合涂层膜对常规环氧树脂的酸和碱电阻。 Ni(II)和Cr(III)复合物的完美保护性能可能归因于它们的高效磁矩(MU(EFF)),这导致通过涂层增强交联密度,从而提高了之间的粘附性钢基材和环氧基质。

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