Faculty of Chemistry and Chemical Technology, University of Maribor, Smetanova 17, Maribor SI-2000, Slovenia.
Faculty of Chemistry and Chemical Technology, University of Maribor, Smetanova 17, Maribor SI-2000, Slovenia; Faculty of Mathematics, Natural Sciences and Information Technologies, University of Primorska, Glagoljaşka 8, Koper SI-6000, Slovenia.
Spectrochim Acta A Mol Biomol Spectrosc. 2022 Feb 15;267(Pt 2):120472. doi: 10.1016/j.saa.2021.120472. Epub 2021 Oct 9.
The pH dependence of the UV/Vis spectrum of gallic and ellagic acid was measured in a buffer-free solution to obtain reliable data at wavelengths bellow 230 nm. UV/Vis absorption spectra were also calculated for all possible ionised species of gallic and ellagic acid using time dependent density functional theory (TD-DFT). From pK values of gallic and ellagic acid the molar fraction of different ionised species was calculated for each pH value. Finally, the simulated spectra at different pH values were obtained as a weighted average of spectra of neutral, once, twice, three-times, and four-times deprotonated species. The calculated spectra were then compared to the experimental spectra, and the peaks in the experimental spectrum were explained in the terms of main electronic transitions that results in the observed absorption bands. At low pH values the agreement between the experimental and calculated spectra was excellent. At near-neutral pH values the majority of the experimental spectra features were well reproduced in the calculated spectra. A satisfactory agreement between experimental and calculated spectrum at high pH values was also achieved by incorporating the calculated spectra of the oxidised species of gallic acid as well as ellagic acid spectra with one lactone ring open.
在无缓冲溶液中测量了没食子酸和鞣花酸的紫外可见光谱的 pH 依赖性,以在 230nm 以下波长获得可靠的数据。还使用时间相关密度泛函理论 (TD-DFT) 计算了没食子酸和鞣花酸的所有可能的离子化物种的紫外可见吸收光谱。根据没食子酸和鞣花酸的 pK 值,计算了每个 pH 值下不同离子化物种的摩尔分数。最后,将不同 pH 值下的模拟光谱作为中性、一次、两次、三次和四次去质子化物种光谱的加权平均值获得。然后将计算出的光谱与实验光谱进行比较,并根据导致观察到的吸收带的主要电子跃迁来解释实验光谱中的峰。在低 pH 值下,实验和计算光谱之间的一致性非常好。在近中性 pH 值下,实验光谱的大多数特征在计算光谱中得到了很好的再现。通过将没食子酸以及鞣花酸的一个内酯环打开的氧化物种的计算光谱以及计算光谱纳入其中,也在高 pH 值下实现了实验和计算光谱之间的令人满意的一致性。