Isoxazoles as efficient alkyne amination reagents in divergent heterocycle synthesis

IF 40.4 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Xin-Qi Zhu, Zhi-Xu Meng, Bo Zhou, Ming-Yu Teng and Long-Wu Ye
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引用次数: 0

Abstract

During the past decades, the exploration of new alkyne amination reactions has attracted increasing attention due to the high efficiency in heterocycle synthesis. In addition to the well-established alkyne amination reagents (such as nitrogen ylides and azides), isoxazoles and their derivatives have been proven to be efficient amination reagents, especially the N,O-bifunctional reagents of alkynes, in the transition metal-catalyzed transformation of alkynes through metal carbene intermediates. Isoxazole derivatives have been extensively applied to the rapid synthesis of a diverse range of structurally complex N-containing molecules, especially the valuable N-heterocycles in atom-economic manner. In this review, we summarize the latest trends and developments of isoxazole-enabled alkyne amination reactions and their applications in divergent heterocycle synthesis, including amination of ynamides, amination of ynol ethers, amination of thioynol ethers, amination of electron-deficient alkynes, amination of unpolarized alkynes and asymmetric amination of alkynes. Finally, we list the current challenges and opportunities for potential breakthroughs in this field.

Abstract Image

异恶唑作为分散杂环合成中高效的炔胺化试剂。
在过去的几十年里,由于杂环合成效率高,探索新的炔胺化反应越来越受到人们的关注。除了已建立的炔胺化试剂(如氮酰化物和叠氮化物)外,异恶唑及其衍生物已被证明是高效的胺化试剂,特别是炔的N, o双官能团试剂,在过渡金属催化下通过金属碳中间体转化炔。异恶唑衍生物已广泛应用于各种结构复杂的含n分子的快速合成,特别是具有原子经济性的有价n杂环化合物。本文综述了异恶唑炔胺化反应的最新进展及其在杂环合成中的应用,包括酰胺的胺化、炔醚的胺化、硫代炔醚的胺化、缺电子炔的胺化、非极化炔的胺化和不对称炔的胺化。最后,我们列出了该领域当前面临的挑战和潜在突破的机遇。
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来源期刊
Chemical Society Reviews
Chemical Society Reviews 化学-化学综合
CiteScore
80.80
自引率
1.10%
发文量
345
审稿时长
6.0 months
期刊介绍: Chemical Society Reviews is published by: Royal Society of Chemistry. Focus: Review articles on topics of current interest in chemistry; Predecessors: Quarterly Reviews, Chemical Society (1947–1971); Current title: Since 1971; Impact factor: 60.615 (2021); Themed issues: Occasional themed issues on new and emerging areas of research in the chemical sciences
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