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苯并稠合对杂环化合物氧代-羟基互变异构的系统影响。实验性基质隔离和理论研究。

Systematic effect of benzo-annelation on oxo-hydroxy tautomerism of heterocyclic compounds. Experimental matrix-isolation and theoretical study.

作者信息

Gerega Anna, Lapinski Leszek, Nowak Maciej J, Furmanchuk Al'ona, Leszczynski Jerzy

机构信息

Institute of Physics, Polish Academy of Sciences, Al. Lotnikow 32/46, 02-668 Warsaw, Poland.

出版信息

J Phys Chem A. 2007 Jun 14;111(23):4934-43. doi: 10.1021/jp070408j. Epub 2007 May 19.

Abstract

Oxo-hydroxy tautomerism and phototautomerism of 2-quinolinone, 1-isoquinolinone, 3-hydroxyisoquinoline, 2-quinoxalinone, and 4-quinazolinone were studied using the matrix-isolation technique. These compounds contain a benzene ring fused with a heterocyclic ring of 2-pyridinone, 2-pyrazinone, or 4-pyrimidinone. It turned out that direct attachment of a benzene ring to a heterocycle leads to a very pronounced increase of the relative stability of oxo tautomers (in comparison with the tautomerism of the parent compounds 2-pyridinone, 2-pyrazinone, and 4-pyrimidinone). The only exception concerns 3-hydroxyisoquinoline, where fusion with a benzene ring enforces rearrangement of the double- and single-bond system in the oxo tautomer. This destabilizes substantially the oxo form with respect to the hydroxy tautomer. The ratios of population of the oxo and hydroxy tautomers observed in Ar matrixes correspond to the tautomeric equilibria of the compounds in the gas phase. These equilibria were well reproduced by theoretical calculations carried out at the QCISD and QCISD(T) levels. The combined experimental and theoretical results reveal links between aromaticity and tautomerism. Moreover, a UV-induced phototautomeric reaction transforming the oxo forms into the hydroxy tautomers was observed for all (except 3-hydroxyisoquinoline) studied compounds. This photoeffect allowed separation of the IR spectra of the tautomers in question.

摘要

采用基质隔离技术研究了2-喹啉酮、1-异喹啉酮、3-羟基异喹啉、2-喹喔啉酮和4-喹唑啉酮的氧代-羟基互变异构和光互变异构。这些化合物含有一个与2-吡啶酮、2-吡嗪酮或4-嘧啶酮杂环稠合的苯环。结果表明,苯环直接连接到杂环上会导致氧代互变异构体的相对稳定性显著增加(与母体化合物2-吡啶酮、2-吡嗪酮和4-嘧啶酮的互变异构相比)。唯一的例外是3-羟基异喹啉,其中与苯环稠合会导致氧代互变异构体中双键和单键系统的重排。这使得氧代形式相对于羟基互变异构体大大不稳定。在氩基质中观察到的氧代和羟基互变异构体的丰度比与化合物在气相中的互变异构平衡相对应。在QCISD和QCISD(T)水平上进行的理论计算很好地再现了这些平衡。实验和理论相结合的结果揭示了芳香性和互变异构之间的联系。此外,对于所有(除3-羟基异喹啉外)研究的化合物,都观察到了紫外线诱导的将氧代形式转化为羟基互变异构体的光互变异构反应。这种光效应使得所讨论的互变异构体的红外光谱得以分离。

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