Basílio Nuno, Pina Fernando
REQUIMTE, Departamento de Química, Faculdade de Ciências e Tecnologia, Universidade Nova de Lisboa, 2829-516 Monte de Caparica (Portugal).
Chemphyschem. 2014 Aug 4;15(11):2295-302. doi: 10.1002/cphc.201402051. Epub 2014 May 23.
In moderately acidic aqueous solutions, flavylium compounds undergo a pH-, and in some cases, light-dependent array of reversible chemical reactions. This network can be described as a single acid-base reaction involving a flavylium cation (acidic form) and a mixture of basic forms (quinoidal base, hemiketal and cis and trans chalcones). The apparent pK'a of the system and the relative mole fractions of the basic forms can be modulated by the interaction with cucurbit[7]uril. The system is studied by using (1) H NMR spectroscopy, UV/Vis spectroscopy, flash photolysis, and steady-state irradiation. Of all the network species, the flavylium cation possesses the highest affinity for cucurbit[7]uril. The rate of interconversion between flavylium cation and the basic species (where trans-chalcone is dominant) is approximately nine times lower inside the cucurbit[7]uril.
在适度酸性的水溶液中,黄酮类化合物会经历一系列与pH相关且在某些情况下还与光有关的可逆化学反应。这个网络可以描述为一个涉及黄酮阳离子(酸性形式)和多种碱性形式(醌式碱、半缩酮以及顺式和反式查耳酮)的单一酸碱反应。该体系的表观pK'a以及碱性形式的相对摩尔分数可通过与葫芦[7]脲的相互作用进行调节。采用¹H NMR光谱、紫外/可见光谱、闪光光解和稳态辐照对该体系进行了研究。在所有网络物种中,黄酮阳离子对葫芦[7]脲具有最高的亲和力。在葫芦[7]脲内部,黄酮阳离子与碱性物种(其中反式查耳酮占主导)之间的相互转化速率大约低九倍。