氧化条件下取代氰亚胺-八羟基喹唑啉的转化

Daniil A. Puzanov, Anna E. Sklyar, Marina V. Konenkova, Adel P. Krivenko
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引用次数: 0

摘要

不同饱和度和功能化程度的取代喹唑啉具有广泛的生物活性,特别是抗癌活性,这就决定了获得这类化合物的新代表和研究其实际用途性质的重要性。文献中对2-氰基亚氨基喹唑啉的制备方法描述甚少,而对其性质和氧化反应的研究却很少。我们分析了2-氰亚氨基喹唑啉的互变异构体形式的稳定性,用量子化学计算确定了它们形成的活化能,研究了它们在强氧化剂(CrO3/AcOH, NaNO2/AcOH)作用下的转化。在氧化过程中,偶氮杂环发生选择性芳构化,- cn -基团水解生成2-氨基氨基甲酰喹啉。温度从120°C升高到160°C(使用CrO3)导致2-亚硝基喹啉的形成。通过IR、1H、13C NMR、HSQC、NOESY等光谱方法确定了新物质的结构,并提出了它们的形成方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Transformations of substituted cyanoiminooctahydroquinazolines under oxidation conditions
Substituted quinazolines of various degrees of saturation and functionalization possess a wide spectrum of biological activity, in particular, anticancer activity, which predetermines the importance of obtaining new representatives of this type of compounds and studying their practically useful properties. Methods for the preparation of 2-cyanoiminoquinazolines are poorly described in the literature, while their properties and oxidation reactions have not been studied at all. We have analyzed the stability of tautomeric forms of 2-cyanoiminoquinazolines, determined the activation energy of their formation using quantum-chemical calculations, studied their transformation under the action of strong oxidants (CrO3/AcOH, NaNO2/AcOH). Selective aromatization of the azoheterocycle and hydrolysis of the -CN-group to form 2-aminocarbamoylquinazoline occurred during oxidation. An increase in temperature from 120 to 160° C (using CrO3) resulted in the formation of 2-nitrosoquinazoline. The structure of our new obtained substances was established by spectral methods (IR, 1H, 13C NMR, HSQC, NOESY), a scheme of their formation has been proposed.
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