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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Deprotonation Mechanism and Acidity Constants in Aqueous Solution of Flavonols: a Combined Experimental and Theoretical Study
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Deprotonation Mechanism and Acidity Constants in Aqueous Solution of Flavonols: a Combined Experimental and Theoretical Study

机译:黄酮醇的水溶液中去质子化机理和酸度常数:结合实验和理论研究。

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摘要

Four flavonols, namely quercetin, morin, kaempferol, and myricetin, were studied using spectrophotometry (UV-vis) in aqueous solution. The study was performed varying the pH to analyze the stability of these compounds, and to estimate their acidity constants. In addition, the deprotonation mechanisms were studied using computational chemistry within the density functional theory framework. The calculations were performed in aqueous solution using the SMD continuum model, and the results are reported as deprotonation energies. Our results show that both quercetin and myricctin are highly unstable at basic pH. Kaempferol, on the other hand, is much more stable, and morin is the only one among the studied compounds that was not affected by pH. In spite of this inconvenience, their acidity constants were estimated through analysis of their decomposition kinetics, correcting the spectra accordingly, and obtaining a correlation of values between the experimentally observed pK_a and the calculated ΔG of successive deprotonations.
机译:使用分光光度法(UV-vis)在水溶液中研究了四种黄酮醇,分别是槲皮素,香豆素,山奈酚和杨梅素。进行了改变pH值的研究,以分析这些化合物的稳定性,并估计其酸度常数。此外,在密度泛函理论框架内使用计算化学研究了去质子化机理。使用SMD连续谱模型在水溶液中进行计算,结果记录为去质子能。我们的结果表明,槲皮素和杨梅素在碱性pH值下都是高度不稳定的。另一方面,山奈酚更稳定,在研究的化合物中,morin是唯一不受pH影响的化合物。尽管存在这些不便,但通过分析其分解动力学,相应地校正光谱并获得实验观察到的pK_a与连续去质子化的ΔG之间的值相关性,可以估算出它们的酸度常数。

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