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2-Hydroxy-N′-((Thiophene-2-yl)methylene)benzohydrazide:Ultrasound-Assisted Synthesis and Corrosion Inhibition Study

机译:2-羟基-N-((噻吩-2-基)亚甲基)苯甲酰肼:超声辅助合成与缓蚀研究

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摘要

2-Hydroxy-N′-((thiophene-2-yl)methylene)benzohydrazide (HTMBH) was synthesized by conventional method as well as by ultrasonication (US). The ultrasound-assisted synthesis of HTMBH was found to have good yield and be more eco-friendly compared to the conventional method of synthesis. The synthesized compound HTMBH was characterized by Fourier transform infrared, 1H NMR, and CHN analyses. The corrosion inhibition behavior of HTMBH was investigated using gravimetric and electrochemical methods in 0.5 M H2SO4. The thermodynamic adsorption parameters revealed that HTMBH was adsorbed on the mild steel surface in both ways, physically and chemically, although physisorption is predominant. The study of activation parameters revealed that it is the increase in activation energy that is a prominent factor to lower the corrosion rate in acid medium. Atomic force microscopy analysis is also carried out to investigate the effect of HTMBH on the surface of mild steel surface in acid solution. The contact angle measurement showed decreased affinity of mild steel surface for acid solution containing HTMBH. The results obtained from all of thesemethods showed good consistency.
机译:通过常规方法以及通过超声处理(US)来合成2-羟基-N'-((噻吩-2-基)亚甲基)苯并酰肼(HTMBH)。与常规合成方法相比,超声辅助的HTMBH合成具有良好的收率和更环保。通过红外傅立叶变换, 1 1H NMR和CHN分析对合成的化合物HTMBH进行表征。使用重量分析法和电化学方法研究了HTMBH在0.5 M H2SO4中的缓蚀性能。热力学吸附参数表明,尽管物理吸附占主导地位,但HTMBH在物理和化学上均以两种方式吸附在低碳钢表面上。活化参数的研究表明,活化能的增加是降低酸性介质中腐蚀速率的重要因素。还进行了原子力显微镜分析,以研究HTMBH对酸性溶液中低碳钢表面的影响。接触角测量结果表明,低碳钢表面对含HTMBH的酸性溶液的亲和力降低。从所有这些获得的结果方法显示出良好的一致性。

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