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Spectroscopic Study of Solvent Effects on the Electronic Absorption Spectra of Flavone and 7-Hydroxyflavone in Neat and Binary Solvent Mixtures

机译:溶剂对纯净和二元混合溶剂中黄酮和7-羟基黄酮电子吸收光谱的影响的光谱研究

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The solvatochromic characteristics of flavone and 7-hydroxyflavone were investigated in neat and binary solvent mixtures. The spectral shifts of these solutes were correlated with the Kamlet and Taft parameters (α, β and π*) using linear solvation energy relationships. The multiparametric analysis indicates that both specific hydrogen bond donor ability and non-specific dipolar interactions of the solvents play an important role in absorption maxima of flavone in pure solvents. The hydrogen bond acceptor ability of the solvent was the main parameter affecting the absorption maxima of 7-hydroxyflavone. The simulated absorption spectra using a TD-DFT method were in good agreement with the experimental ones for both flavones. Index of preferential solvation was calculated as a function of solvent composition. Preferential solvation by ethanol was detected in cyclohexane-ethanol and acetonitrile-ethanol mixtures for flavone and in acetonitrile-ethanol mixtures for 7-hydroxyflavone. These results indicate that intermolecular hydrogen bonds between solute and solvent are responsible for the non-linear variation of the solvatochromic shifts on the mole fraction of ethanol in the analyzed binary mixtures.
机译:研究了黄酮和7-羟基黄酮在纯净和二元溶剂混合物中的溶剂化变色特性。使用线性溶剂化能量关系,这些溶质的光谱位移与Kamlet和Taft参数(α,β和π*)相关。多参数分析表明,溶剂的特定氢键供体能力和非特异性偶极相互作用在纯溶剂中对黄酮的最大吸收具有重要作用。溶剂的氢键受体能力是影响7-羟基黄酮吸收最大值的主要参数。使用TD-DFT方法模拟的吸收光谱与两种黄酮的实验吸收光谱都非常吻合。根据溶剂组成计算优先溶剂化指数。在环己烷-乙醇和乙腈-乙醇混合物中检测到黄酮,在乙腈-乙醇混合物中检测到乙醇的优选溶剂。这些结果表明溶质和溶剂之间的分子间氢键是导致溶剂化变色位移在所分析的二元混合物中乙醇的摩尔分数上的非线性变化的原因。

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