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一些硫代氨基脲对酸性介质中低碳钢腐蚀的抑制电位的吸附和量子化学研究。

Adsorption and quantum chemical studies on the inhibition potentials of some thiosemicarbazides for the corrosion of mild steel in acidic medium.

作者信息

Ebenso Eno E, Isabirye David A, Eddy Nnabuk O

机构信息

Department of Chemistry, North West University (Mafikeng Campus), Private Bag X2046, Mmabatho 2735, South Africa.

出版信息

Int J Mol Sci. 2010 Jun 15;11(6):2473-98. doi: 10.3390/ijms11062473.

Abstract

Three thiosemicarbazides, namely 2-(2-aminophenyl)-N phenylhydrazinecarbothioamide (AP4PT), N,2-diphenylhydrazinecarbothioamide (D4PT) and 2-(2-hydroxyphenyl)-N-phenyl hydrazinecarbothioamide (HP4PT), were investigated as corrosion inhibitors for mild steel in H(2)SO(4) solution using gravimetric and gasometric methods. The results revealed that they all inhibit corrosion and their % inhibition efficiencies (%IE) follow the order: AP4PT > HP4PT > D4PT. The %IE obtained from the gravimetric and gasometric experiments were in good agreement. The thermodynamic parameters obtained support a physical adsorption mechanism and the adsorption followed the Langmuir adsorption isotherm. Some quantum chemical parameters were calculated using different methods and correlated with the experimental %IE. Quantitative structure activity relationship (QSAR) approach was used on a composite index of some quantum chemical parameters to characterize the inhibition performance of the studied molecules. The results showed that the %IE were closely related to some of the quantum chemical parameters, but with varying degrees. The calculated/theoretical %IE of the molecules were found to be close to their experimental %IE. The local reactivity has been studied through the Fukui and condensed softness indices in order to predict both the reactive centers and to know the possible sites of nucleophilic and electrophilic attacks.

摘要

采用重量法和气体容量法,研究了三种硫代氨基脲,即2-(2-氨基苯基)-N-苯基肼基甲硫酰胺(AP4PT)、N,2-二苯基肼基甲硫酰胺(D4PT)和2-(2-羟基苯基)-N-苯基肼基甲硫酰胺(HP4PT)在H₂SO₄溶液中对低碳钢的缓蚀性能。结果表明,它们均能抑制腐蚀,其缓蚀效率(%IE)顺序为:AP4PT > HP4PT > D4PT。重量法和气体容量法实验得到的%IE结果吻合良好。所获得的热力学参数支持物理吸附机理,且吸附遵循朗缪尔吸附等温线。采用不同方法计算了一些量子化学参数,并将其与实验%IE进行关联。利用一些量子化学参数的复合指数,采用定量构效关系(QSAR)方法来表征所研究分子的缓蚀性能。结果表明,%IE与一些量子化学参数密切相关,但程度不同。发现分子的计算/理论%IE与其实验%IE接近。通过福井指数和凝聚软度指数研究了局部反应活性,以预测反应中心并了解亲核和亲电攻击的可能位点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1f16/2904928/8a6984687765/ijms-11-02473f1.jpg

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