首页> 外文期刊>The Journal of Organic Chemistry >Charting the Chemical Reactivity Space of 2,3-Substituted Furo[2,3-b]pyridines Synthesized via the Heterocyclization of Pyridine-N-oxide Derivatives
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Charting the Chemical Reactivity Space of 2,3-Substituted Furo[2,3-b]pyridines Synthesized via the Heterocyclization of Pyridine-N-oxide Derivatives

机译:绘制通过吡啶-N-氧化物衍生物杂环化合成的2,3-取代的呋喃并[2,3-b]吡啶的化学反应空间

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摘要

A concise strategy for the synthesis of 2,3 substituted furo[2,3-b]pyridines is described. Mild, metal-free conditions were successfully applied to produce a range of 2 (alkyl or aryl)-3-ethylcarboxylate-furo[2,3-b]pyriclies in yields of 50-91%. Then, the chemical reactivity of this heterocyclic framework was explored to develop straightforward methods for its functionalization. The pyridine moiety reactivity was successfully explored by C-H amination and borylation reactions, although C-H fluorination and radical C-H arylation processes were not as efficient. In addition, while the furopyridine core proved stable under basic conditions, the ring-opening reaction of the furan moiety with hydrazine generated a valuable new pyridine-dihydropyrazolone scaffold.
机译:描述了一种合成2,3取代的呋喃并[2,3-b]吡啶的简明策略。温和的,无金属的条件已成功地应用于生产一系列2(烷基或芳基)-3-乙基羧酸酯-呋喃[2,3-b]吡啶,产率为50-91%。然后,对该杂环框架的化学反应性进行了研究,以开发对其功能化的直接方法。吡啶部分的反应性已通过C-H胺化和硼化反应成功地进行了探索,尽管C-H氟化和自由基C-H芳基化过程效率不高。另外,尽管呋喃吡啶核在碱性条件下被证明是稳定的,但呋喃部分与肼的开环反应产生了有价值的新吡啶-二氢吡唑啉酮骨架。

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