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Ab initio study of two quinoline derivatives as corrosion inhibitor in acidic media: electronic structure, inhibitor-metal interaction, and nuclear quadrupole resonance parameters

机译:从头开始研究两种喹啉衍生物作为酸性介质中的腐蚀抑制剂:电子结构,抑制剂与金属的相互作用以及核四极共振参数

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摘要

Density functional theory B3LYP and Hartree-Fock methods with 6-311++G** basis set were utilized to study the relationship between electronic structure and corrosion inhibition efficiencies of protonated and non-protonated forms of 3-formyl 8-hydroxy quinoline and 5-naphthylazo-8-hydroxyquinoline (5NA8HQ) in acidic media in gas and solvent phase. Quantum chemical parameters including highest molecular orbital energy, lowest unoccupied molecular orbital energy, energy gap (DEg), the fraction of electrons transferred (DN), and energy change during charge transfer (DE) were calculated. Protonation energy calculations showed that the favorite protonation site of 5NA8HQ is the N12 position, which is confirmed by the result of previously reported experimental investigations. Calculations on the inhibitor/iron system were performed using the B3LYP/6-311++G** method and found that azo nitrogens of 5NA8HQ have better interaction with iron. Also, nuclear quadrupole resonance parameters indicate that azo nitrogens (N11 and N12) are the best sites for interaction with iron.
机译:利用密度泛函理论B3LYP和具有6-311 ++ G **基集的Hartree-Fock方法研究了3-甲酰基8-羟基喹啉和5的质子化和非质子化形式的电子结构与缓蚀效率之间的关系。 -萘基偶氮-8-羟基喹啉(5NA8HQ)在酸性介质中的气相和溶剂相。计算了包括最高分子轨道能,最低未占据分子轨道能,能隙(DEg),转移的电子分数(DN)和电荷转移期间的能量变化(DE)在内的量子化学参数。质子能的计算表明,5NA8HQ最喜欢的质子化位点是N12位置,这已由先前报道的实验研究结果证实。使用B3LYP / 6-311 ++ G **方法对抑制剂/铁系统进行了计算,发现5NA8HQ的偶氮与铁的相互作用更好。同样,核四极共振参数表明偶氮(N11和N12)是与铁相互作用的最佳部位。

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