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叠氮基和芳硫基的亲核-亲核转换在喹唑啉和四唑并喹唑啉衍生物合成中的应用。

Nucleophile-nucleofuge duality of azide and arylthiolate groups in the synthesis of quinazoline and tetrazoloquinazoline derivatives.

机构信息

Institute of Technology of Organic Chemistry, Faculty of Materials Science and Applied Chemistry, Riga Technical University, Paula Valdena Str. 3, Riga, LV-1048, Latvia.

出版信息

Org Biomol Chem. 2021 Sep 15;19(35):7706-7723. doi: 10.1039/d1ob01315g.

Abstract

5-Arylthio-tetrazolo[1,5-]quinazolines (tautomers of 2-arylthio-4-azido-quinazolines) undergo facile nucleophilic aromatic substitution reactions with amines, alcohols and alkylthiols. This, combined with the recently reported arylsulfanyl group dance, provides straightforward access to 4-azido-2--, -, -substituted quinazolines and/or their tetrazolo tautomers from commercially available 2,4-dichloroquinazoline. The azidoazomethine-tetrazole tautomeric equilibrium and the electron-withdrawing character of the fused tetrazolo system plays a central role in the developed transformations. 5-Amino-substituted tetrazolo[1,5-]quinazolines undergo media-controlled tautomeric equilibrium, which permits them to demonstrate the reactivity traditionally associated with the azido substituent. Furthermore, a method for 5--substitited tetrazolo[1,5-]quinazolines from 2,4-diazidoquinazoline was developed during the structural elucidation of the substitution products. The developed methodology will facilitate medicinal chemistry investigations into quinazoline derivatives and the discovered fluorescent properties of some of the products (, 4-(4-phenyl-1-1,2,3-triazol-1-yl)-2-(4-methylpiperazin-1-yl)quinazoline: = 461 nm, = 0.89) could serve as a starting point for their further applications in analytical and materials science.

摘要

5-芳基硫代-四唑并[1,5-a]喹唑啉(2-芳基硫代-4-叠氮基喹唑啉的互变异构体)可与胺、醇和硫醇发生易发生亲核芳香取代反应。这一点,再加上最近报道的芳基硫基舞蹈,为从商业上可获得的 2,4-二氯喹唑啉直接获得 4-叠氮基-2--,-,-取代的喹唑啉和/或其四唑互变异构体提供了便利。叠氮亚胺-四唑互变异构平衡和稠合四唑系统的吸电子特性在开发的转化中起着核心作用。5-氨基取代的四唑并[1,5-a]喹唑啉经历介质控制的互变异构平衡,使其能够展示与叠氮取代基相关的传统反应性。此外,在取代产物的结构阐明过程中,开发了一种从 2,4-二叠氮喹唑啉制备 5--取代的四唑并[1,5-a]喹唑啉的方法。所开发的方法将促进喹唑啉衍生物的药物化学研究,并且一些产物的发现荧光性质(例如,4-(4-苯基-1H-1,2,3-三唑-1-基)-2-(4-甲基哌嗪-1-基)喹唑啉:λex = 461nm,ε = 0.89)可以作为进一步在分析和材料科学中应用的起点。

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