首页> 外文期刊>Journal of Photochemistry and Photobiology, A. Chemistry >Pyrazolyc 3-hydroxychromones: Regulation of ESIPT reaction by the 'flavonol-like' intramolecular hydrogen bonding to carbonyl group oxygen, which dominates over the 'alternative' H-bond to heterocyclic nitrogen
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Pyrazolyc 3-hydroxychromones: Regulation of ESIPT reaction by the 'flavonol-like' intramolecular hydrogen bonding to carbonyl group oxygen, which dominates over the 'alternative' H-bond to heterocyclic nitrogen

机译:吡唑基3-羟基色酮:通过“类黄酮”分子内氢键合到羰基氧上来调节ESIPT反应,羰基氧占主导地位,“ H”键与杂环氮原子成键

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摘要

Two isomeric pyrazole derivatives of 3-hydroxychromone (3HC) with and without the possibility of the multiple intramolecular hydrogen bonds formation were compared theoretically and experimentally with the aim to find out whether the excited state intramolecular proton transfer (ESIPT) reaction follows the traditional to the most of 3HCs "flavonol-like" direction towards the C=O group oxygen or an "alternative" direction towards the heterocyclic nitrogen atom.Quantum-chemical modeling and comparative study of the experimental spectral parameters of the title compounds indicated the preferential realization of "flavonol-like" ESIPT to oxygen channel.The 3HC systems with the "alternative" intramolecular hydrogen bond to nitrogen were characterized as low fluorescent and practically unable to ESIPT with participation of the nitrogen containing heterocyclic unit.
机译:从理论上和实验上比较了两种3-羟基色酮(3HC)异构异构吡唑衍生物的形成和不存在形成多个分子内氢键的可能性,目的是发现激发态分子内质子转移(ESIPT)反应是否遵循传统方法。 3HCs多数朝着C = O基团氧的“类黄酮”方向或朝着杂环氮原子的“另类”方向。标题化合物的实验化学光谱参数的量子化学建模和比较研究表明,优先实现“类黄酮类“ ESIPT连接到氧气通道。”分子中具有与氢“交替”的氢键的3HC系统具有低荧光性,在含氮杂环单元的参与下几乎无法进行ESIPT。

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