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黄酮衍生物对Cu(111)表面的潜在缓蚀性能:密度泛函理论与蒙特卡罗模拟相结合的研究

Potential Corrosion Inhibition Properties of Flavone Derivatives on the Cu(111) Surface: A Combined DFT and Monte Carlo Simulation Study.

作者信息

Omer Rebaz Anwar, Azeez Yousif Hussein, Kareem Rebaz Obaid, Ahmed Lana Omer, Safin Damir A

机构信息

Department of Chemistry, Faculty of Science and Health, Koya University, Danielle Mitterrand Boulevard, Koya KOY45, Kurdistan Region - F.R., Iraq.

Department of Pharmacy, College of Pharmacy, Knowledge University, Erbil, 44001, Iraq.

出版信息

J Fluoresc. 2025 Jan 8. doi: 10.1007/s10895-024-04117-6.

Abstract

Since corrosion causes significant harm to the environment and economy, sustainable corrosion inhibitors are essential. This study set out to examine Anti-corrosion ability of a number of closely related polycyclic compounds of flavone derivatives, namely 5,7-dimethoxyflavone (1), 4',5,7-trimethoxyflavone (2), 3',4',5'-trimethoxyflavone (3), 5-hydroxy-3,3',4',7-tetramethoxyflavone (4), tangeretin (5), 3,3',4',5,6,7,8-heptamethoxyflavone (6), 3',5,7-trihydroxy-4',5',6-trimethoxyflavone (7) and 3',4',5,7-tetrahydroxy-3,6,8-trimethoxyflavone (8), using the DFT/B3LYP/6-311 + + G(d, p) basis set. Monte Carlo simulations were used to reveal the adsorption of the investigated compounds on the Cu(111) surface. The results showed that all compounds exhibited excellent or good molecule-to-metal electron charge transfer, with compounds 6 and 8 performing the best, followed by compounds 2, 4, 5, and 7. According to the simulations, compound 6 and compound 7 exhibited the lowest adsorption energy, which can likely be attributed to the significant role of the methoxy and hydroxy substituents on both benzene rings. This analysis indicates that compounds 6 and 7 are the most promising candidates for preventing corrosion on copper.

摘要

由于腐蚀对环境和经济造成重大危害,因此可持续的缓蚀剂至关重要。本研究着手使用DFT/B3LYP/6-311++G(d,p)基组,研究多种紧密相关的黄酮衍生物多环化合物,即5,7-二甲氧基黄酮(1)、4',5,7-三甲氧基黄酮(2)、3',4',5'-三甲氧基黄酮(3)、5-羟基-3,3',4',7-四甲氧基黄酮(4)、橘皮素(5)、3,3',4',5,6,7,8-七甲氧基黄酮(6)、3',5,7-三羟基-4',5',6-三甲氧基黄酮(7)和3',4',5,7-四羟基-3,6,8-三甲氧基黄酮(8)的抗腐蚀能力。采用蒙特卡罗模拟来揭示所研究化合物在Cu(111)表面的吸附情况。结果表明,所有化合物均表现出优异或良好的分子到金属的电子电荷转移,其中化合物6和8表现最佳,其次是化合物2、4、5和7。根据模拟结果,化合物6和化合物7表现出最低的吸附能,这可能归因于两个苯环上甲氧基和羟基取代基的重要作用。该分析表明,化合物6和7是防止铜腐蚀最有希望的候选物。

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