Electrochemical Synthesis of Aziridines, Pyrrolidines and Oxazolines Enabled by Azo-Free Alcohol Amination

IF 7.6 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Qilei Zhu, Emma A. Hale
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引用次数: 0

Abstract

Although amines and nitrogen-containing heterocycles are prominent scaffolds in bioactive compounds, functional materials, and commodity chemicals, their synthesis and functionalization often suffer from lengthy pre-installation of the appropriate functional groups, employing exotic amination/aziridination reagents and the use of expensive or toxic catalysts. Herein, we developed a mild and economic electrochemical amination method to access aziridine, pyrrolidine and oxazoline motifs from the corresponding amino alcohol substrates. Compared to the classic Mitsunobu reaction, this method exhibits expanded scope of nucleophiles, including weakly acidic amides and primary amines. Mechanistic studies provided direct evidence for the proposed two-electron oxidation of alcohol and PPh3 to yield the alkoxyphosphonium cation intermediate. This reaction demonstrates the potential of using electrochemistry to not only replace azo-oxidants in classic Mitsunobu reactions, but also improve the synthetic applicability by overcoming the pKa limit due to the azo-derived betaine intermediate.
无偶氮醇胺化催化合成氮嘧啶、吡咯烷和恶唑啉类化合物
虽然胺和含氮杂环化合物是生物活性化合物、功能材料和商品化学品的重要支架,但它们的合成和功能化往往需要长时间预先安装适当的官能团,使用外来胺化/叠氮化试剂,并使用昂贵或有毒的催化剂。在此,我们开发了一种温和和经济的电化学胺化方法,从相应的氨基醇底物中获得叠氮、吡咯烷和恶唑啉基序。与经典的光信反应相比,该方法扩大了亲核试剂的范围,包括弱酸性酰胺和伯胺。机理研究为提出的醇和PPh3双电子氧化制烷氧磷阳离子中间体提供了直接证据。该反应不仅证明了电化学技术在取代传统Mitsunobu反应中的偶氮氧化剂方面的潜力,而且通过克服偶氮衍生的甜菜碱中间体的pKa限制,提高了合成的适用性。
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来源期刊
Chemical Science
Chemical Science CHEMISTRY, MULTIDISCIPLINARY-
CiteScore
14.40
自引率
4.80%
发文量
1352
审稿时长
2.1 months
期刊介绍: Chemical Science is a journal that encompasses various disciplines within the chemical sciences. Its scope includes publishing ground-breaking research with significant implications for its respective field, as well as appealing to a wider audience in related areas. To be considered for publication, articles must showcase innovative and original advances in their field of study and be presented in a manner that is understandable to scientists from diverse backgrounds. However, the journal generally does not publish highly specialized research.
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