乙醇中氯黄与不同羟基部分的浓度依赖性关联

Colorants Pub Date : 2021-12-23 DOI:10.3390/colorants1010004
Anthony Pagan, Jong I. Lee, Jeonghee Kang
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引用次数: 0

摘要

采用Aldol缩合法合成了6a-6e黄离子,比较了AH+上羟基数目和位置的不同对黄离子光谱性质的影响。在不添加酸的情况下,将乙醇中的黄离子浓度增加到10 mM,可以观察到以下结果。OH基团数量最少的黄离子(6a和6b)在较高浓度下出现峰值变化,而6c和6d的h - nmr信号变化程度不同。这表明,即使在低浓度下,异构体B、CE和Cz也更倾向于含有更多OH基团的黄离子。造成这种转变的一个可能原因是,通过聚集,黄离子变得更加稳定。除了核磁共振结果外,紫外线测量证实,具有较少OH基团的异构体在较高浓度下向黄离子的转变更为剧烈。利用DFT//B3LYP/6311**G(d)水平的模型数据,研究了配合物的自缔合关系,结果表明,OH基团的氢键是配合物的主要参与者,但如果没有氯离子的存在,配合物不能完全稳定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Concentration-Dependent Association of Flavylium Chloride with Differential Hydroxy Moieties in Ethanol
Flavylium ions (6a–6e) were synthesized using Aldol condensation to compare the spectroscopic properties caused by the different numbers and locations of hydroxy groups on the flavylium cations (AH+). Without the addition of acid, increasing the concentration of flavylium ions to 10 mM in ethanol led to the following observation. The flavylium ions with the least number of OH groups (6a and 6b) showed a change in peak at higher concentrations, whereas 6c and 6d did not show the same degree of change in their 1H-NMR signals. This suggests an equilibrium that shifts the isomers B, CE, and Cz more towards the flavylium ion with more OH groups even at low concentrations. One possibility for the cause of this shift is that the flavylium ions become more stable through aggregation. In addition to the NMR results, the UV measurements confirmed that isomers with fewer OH groups showed a more dramatic shift towards the flavylium ion at higher concentrations. Using modeling data at DFT//B3LYP/6311**G(d) level, the self-association was investigated to show that the hydrogen bonding of OH groups is the main player but cannot stabilize entirely without the presence of the chloride ion in the complex.
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