Study of the Corrosion Inhibition Efficiency by Using New Azo Compounds from Thiazole Derivatives

Saja H. Abdalla
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Abstract

Azo compounds were prepared by reacting thiazole derivatives with 2-naphthol, o-vanillin, 4-(dimethyl amino) pyridine, and 4-bromo aniline with thiazole derivatives. The molar conductivity of the azo compounds prepared in this study was measured using (ethanol) as a solvent and at room temperature, all compounds showed non-electrolytic behavior. The compounds were characterized by TGA/DTA, studying the thermal stability and calculating the activation energy of azo compounds, where the thermal analyses of the prepared compounds were measured to identify the temperature at which the compound disintegrates, as the compound has more than one degree of disintegration, and this variation in the degrees of disintegration and the remaining materials depends on the nature of the compound and the type of groups present in it, as well as the efficiency of their use as materials. Resistant to corrosion by weight loss method with different concentrations at constant temperature. The higher the concentration, the greater the inhibition efficiency.
使用噻唑衍生物中的新型偶氮化合物抑制腐蚀效率的研究
噻唑衍生物与 2-萘酚、邻香兰素、4-(二甲基氨基)吡啶和 4-溴苯胺与噻唑衍生物反应制备了偶氮化合物。以乙醇为溶剂测量了本研究制备的偶氮化合物的摩尔电导率,在室温下,所有化合物均表现出非电解行为。通过 TGA/DTA 对化合物进行了表征,研究了偶氮化合物的热稳定性并计算了其活化能,其中对所制备化合物的热分析测量是为了确定化合物崩解的温度,因为化合物的崩解程度不止一种,这种崩解程度和剩余材料的变化取决于化合物的性质和其中存在的基团类型,以及其作为材料的使用效率。在恒温条件下,用失重法测定不同浓度的耐腐蚀性。浓度越高,抑制效率越高。
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