六氟-1,4-萘醌与取代的5-氨基吡唑反应的研究

IF 2 3区 化学 Q2 CHEMISTRY, ORGANIC Journal of Heterocyclic Chemistry Pub Date : 2024-09-30 DOI:10.1002/jhet.4911
Ekaterina N. Kudryavtseva, Boris V. Lichitsky, Andrey N. Komogortsev, Constantine V. Milyutin, Evgeny V. Tretyakov
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引用次数: 0

摘要

首次研究了全氟-1,4-萘醌与各种5-氨基吡唑的相互作用。结果表明,根据起始氨基吡唑的结构,可以得到三种不同的产物。对于所有的例子,一个氟原子取代醌部分被观察到。其中,在大多数情况下,起始氨基吡唑作为c -亲核试剂导致2-(5-氨基吡唑-4-基)-3,5,6,7,8-五氟萘-1,4-二酮。同时,在环氮原子区域未被取代的底物在氨基上特异性反应,生成2,5,6,7,8-五氟-3-((吡唑-5-基)氨基)萘-1,4-二酮。此外,由于吡唑单元中没有空间位阻,我们可以直接在2位氮原子上合成两性离子3-(5-氨基吡唑-2-ium-2-基)-5,6,7,8-四氟-1,4-二氧基-1,4-二氢萘-2-酸盐。用x射线分析证实了两种产物的结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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The Study of Reaction of Hexafluoro-1,4-Napthoquinone With Substituted 5-Aminopyrazoles

For the first time, the interaction of perfluoro-1,4-naphthoquinone with various 5-aminopyrazoles was investigated. It was shown that three types of products can be obtained depending on the structure of starting aminopyrazole. For all examples, the substitution of one fluorine atom in quinone moiety was observed. Wherein, in most cases, the starting aminopyrazoles act as a C-nucleophile leading to 2-(5-aminopyrazol-4-yl)-3,5,6,7,8-pentafluoronaphthalene-1,4-diones. At the same time substrates unsubstituted at ring nitrogen atom regiospecifically react at aminogroup resulting in the formation of 2,5,6,7,8-pentafluoro-3-((pyrazol-5-yl)amino)naphthalene-1,4-diones. Besides that, the absence of steric hindrance in the pyrazole unit allowed us to direct the process at nitrogen atom in Position 2 and synthesize zwitter-ionic 3-(5-aminopyrazol-2-ium-2-yl)-5,6,7,8-tetrafluoro-1,4-dioxo-1,4-dihydronaphthalen-2-olates. The structures of two types of obtained products were confirmed by x-ray analysis.

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来源期刊
Journal of Heterocyclic Chemistry
Journal of Heterocyclic Chemistry 化学-有机化学
CiteScore
5.20
自引率
4.20%
发文量
177
审稿时长
3.9 months
期刊介绍: The Journal of Heterocyclic Chemistry is interested in publishing research on all aspects of heterocyclic chemistry, especially development and application of efficient synthetic methodologies and strategies for the synthesis of various heterocyclic compounds. In addition, Journal of Heterocyclic Chemistry promotes research in other areas that contribute to heterocyclic synthesis/application, such as synthesis design, reaction techniques, flow chemistry and continuous processing, multiphase catalysis, green chemistry, catalyst immobilization and recycling.
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