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Deprotonation Mechanism of Methyl Gallate: UV Spectroscopic and Computational Studies

机译:没食子酸甲酯的去质子化机理:紫外光谱和计算研究

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摘要

In the present paper, methyl gallate (MeG), a simple polyphenol and also the monomer of hydrolysable tannins, was selected to study the deprotonation process for the hydroxyls of the galloyl group by the combined use of spectroscopic measurements and quantum chemical calculations. The results of quantum chemical calculations show that the deprotonated form of methyl gallate undergoes the para-quinoid localization in the benzene ring, compared with free methyl gallate. The predicted spectra obtained from the free and deprotonated methyl gallate models are in agreement with the experimental UV-visible (UV-vis) absorption spectra. In the same way, the vibrational spectra of the para-quinoid MeG models validate the proposed mechanism of the deprotonation of MeG molecule. The pH influence on the deprotonation reaction and oxidization of phenolic groups has been also investigated. The pKa values of MeG were evaluated using the chemometric modeling method. The first acid dissociation constant (pKa1) for MeG was evaluated to be 4.20 ± 0.01, and the second one (pKa2) was 10.78 ± 0.06.
机译:在本文中,选择了没食子酸甲酯(MeG),一种简单的多酚以及可水解单宁的单体,通过光谱测量和量子化学计算的结合来研究没食子酰基羟基的去质子化过程。量子化学计算的结果表明,与游离的没食子酸甲酯相比,去质子化形式的没食子酸甲酯在苯环中经历了对醌样的局部化。从游离和去质子化没食子酸甲酯模型获得的预测光谱与实验性UV-可见(UV-vis)吸收光谱一致。同样,对醌型MeG模型的振动光谱验证了拟议的MeG分子去质子化机理。还研究了pH对脱质子反应和酚基氧化的影响。 MeG的pKa值使用化学计量学建模方法进行评估。 MeG的第一个酸解离常数(pKa1)评估为4.20±0.01,第二个(pKa2)为10.78±0.06。

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