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首页> 外文期刊>Applied Surface Science >A novel organic-inorganic hybrid complex based on Cissus quadrangularis plant extract and zirconium acetate as a green inhibitor for mild steel in 1 M HCl solution
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A novel organic-inorganic hybrid complex based on Cissus quadrangularis plant extract and zirconium acetate as a green inhibitor for mild steel in 1 M HCl solution

机译:一种基于四叶草植物提取物和醋酸锆的新型有机-无机杂化复合物,作为绿色缓蚀剂,用于1 M HCl溶液中的低碳钢

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摘要

An organic-inorganic hybrid complex based on Cissus quadrangularis (CQ) plant extract and zirconium acetate (CQ-ZrAc) was synthesized, characterized and studied as a novel green inhibitor against mild steel corrosion in 1 M HCl solution using gravimetric analysis, potentiodynamic polarization (PDP) and electrochemical impedance spectroscopy (EIS). The corrosion inhibition effect of the complex was also compared with CQ. GC-MS and FTIR studies were conducted to assess the active organic species and the functional group present in the extract which caused its adsorption on the mild steel surface and lead to complex formation with ZrAc. The gravimetric parameters revealed that inhibition efficiency depends both on the temperature of corrosive solution and inhibitors concentration. Adsorption of both CQ and CQ-ZrAc follow Langmuir adsorption isotherm. PDP analysis suggests that both compounds act as a mixed type of inhibitor. EIS data revealed the formation of a protective film by the adsorption of active species present in the extract. SEM images show better morphology in presence of CQ-ZrAc complex as compared to CQ. UV-visible and FTIR results indicate a good interaction between inhibitors and mild steel surface. Density functional theory has been carried out to correlate the inhibition efficiency with inherent molecular structure and parameters. Analysis of variance statistically compare the difference existing between inhibition efficiencies from gravimetric, PDP and EIS technique and suggests that they are not significantly different.
机译:合成了基于Cissus quadrangularis(CQ)植物提取物和乙酸锆(CQ-ZrAc)的有机-无机杂化复合物,并通过重量分析,电位动态极化( PDP)和电化学阻抗谱(EIS)。还将该复合物的腐蚀抑制作用与CQ进行了比较。进行了GC-MS和FTIR研究,以评估提取物中存在的活性有机物种类和官能团,这导致其在低碳钢表面上的吸附并导致与ZrAc形成复合物。重量参数表明抑制效率取决于腐蚀性溶液的温度和抑制剂的浓度。 CQ和CQ-ZrAc的吸附均遵循Langmuir吸附等温线。 PDP分析表明这两种化合物都是抑制剂的混合类型。 EIS数据表明,通过提取物中存在的活性物质的吸附形成了保护膜。与CQ相比,SEM图像显示在CQ-ZrAc复合物存在下更好的形态。紫外可见和FTIR结果表明抑制剂与低碳钢表面之间具有良好的相互作用。已经进行了密度泛函理论以将抑制效率与固有分子结构和参数相关联。方差分析从统计学上比较了重量分析法,PDP技术和EIS技术的抑制效率之间的差异,并表明它们之间没有显着差异。

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