约旦胡椒主要活性成分对铜、铁和铝金属腐蚀率的抑制作用

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摘要

研究人员利用气相色谱-质谱(GC-MS)和 DFT 计算方法对约旦胡椒(Peganum harmala L.)的活性成分进行了研究。研究重点是 P. harmala 叶子的甲醇提取物,发现其中含有 21 种重要的天然成分,其中 9 种化合物占总成分的 2% 以上。这 9 种化合物包括 α-D-Glucopyranose (GLUC)、Phenobarbital (PHEN)、Melibiose (MELI)、Cyanuric acid (CYAN)、D-Glucuronic acid (GLUCU)、Ethylamine (ETHY)、3-Hydroxysebacic acid (HYSE)、3-Hydroxytetradecanedioic acid (HYTD) 和 α-Tocopherol (TOCO) 作为铝、铁和铜金属的环保型缓蚀剂进行了评估。结果表明,在这 9 种化合物中,TOCO 的抗腐蚀性能最高,与 Al 和 Cu 相比,Fe 的抑制活性最高。金属表面的高亲电性和吸附物的吉布斯自由能值使 TOCO 成为一种出色的缓蚀剂。抑制剂的 HOMO 和 LUMO 间隙按以下顺序减小:ethy > gluc > meli > hytd > hyse > cyan > glucu > phen > toco。这些研究结果表明,这些化学物质可以作为金属表面的环境友好型防腐抑制剂,不过还需要更多的体外实验来证实这些结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Inhibition impact of major active ingredients of Jordanian Peganum harmala on the corrosion rate of Cu, Fe and Al metals
The active components of Jordanian Peganum harmala L. (P. harmala) were investigated using both GC-MS and DFT calculations. The study focused on the methanol extract of P. harmala leaves, which was found to contain 21 significant natural components, of which 9 compounds constituted more than 2% of the total composition. These 9 compounds, including α-D-Glucopyranose (GLUC), Phenobarbital (PHEN), Melibiose (MELI), Cyanuric acid (CYAN), D-Glucuronic acid (GLUCU), Ethylamine (ETHY), 3-Hydroxysebacic acid (HYSE), 3-Hydroxytetradecanedioic acid (HYTD), and α-Tocopherol (TOCO), were evaluated as eco-friendly corrosion inhibitors for Al (Aluminium), Fe (Iron), and Cu (Cooper) metals using DFT calculations. The results showed that TOCO had the highest anti-corrosion performance among the 9 compounds, with Fe exhibiting the most inhibitory activity compared to Al and Cu. The high electrophilicity and Gibbs free energy of adsorbate value on metal surfaces made TOCO a distinguished corrosion inhibitor. The HOMO and LUMO gap of the inhibitors decreased in the following order: ETHY > GLUC > MELI > HYTD > HYSE > CYAN > GLUCU > PHEN > TOCO. These findings suggest that these chemicals may serve as environmental-friendly anticorrosion inhibitors for metal surfaces, although more in vitro experiments are needed to confirm these results.
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