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钴-卟啉催化脂肪族叠氮化物的分子内环合C-H胺化反应:一种构建饱和杂环的氮烯-自由基方法

Cobalt-Porphyrin-Catalysed Intramolecular Ring-Closing C-H Amination of Aliphatic Azides: A Nitrene-Radical Approach to Saturated Heterocycles.

作者信息

Kuijpers Petrus F, Tiekink Martijn J, Breukelaar Willem B, Broere Daniël L J, van Leest Nicolaas P, van der Vlugt Jarl Ivar, Reek Joost N H, de Bruin Bas

机构信息

Van 't Hoff Institute for Molecular Sciences (HIMS), University of Amsterdam (UvA), Science Park 904, 1098 XH, Amsterdam, The Netherlands.

出版信息

Chemistry. 2017 Jun 12;23(33):7945-7952. doi: 10.1002/chem.201700358. Epub 2017 May 2.

Abstract

Cobalt-porphyrin-catalysed intramolecular ring-closing C-H bond amination enables direct synthesis of various N-heterocycles from aliphatic azides. Pyrrolidines, oxazolidines, imidazolidines, isoindolines and tetrahydroisoquinoline can be obtained in good to excellent yields in a single reaction step with an air- and moisture-stable catalyst. Kinetic studies of the reaction in combination with DFT calculations reveal a metallo-radical-type mechanism involving rate-limiting azide activation to form the key cobalt(III)-nitrene radical intermediate. A subsequent low barrier intramolecular hydrogen-atom transfer from a benzylic C-H bond to the nitrene-radical intermediate followed by a radical rebound step leads to formation of the desired N-heterocyclic ring products. Kinetic isotope competition experiments are in agreement with a radical-type C-H bond-activation step (intramolecular KIE=7), which occurs after the rate-limiting azide activation step. The use of di-tert-butyldicarbonate (Boc O) significantly enhances the reaction rate by preventing competitive binding of the formed amine product. Under these conditions, the reaction shows clean first-order kinetics in both the [catalyst] and the [azide substrate], and is zero-order in [Boc O]. Modest enantioselectivities (29-46 % ee in the temperature range of 100-80 °C) could be achieved in the ring closure of (4-azidobutyl)benzene using a new chiral cobalt-porphyrin catalyst equipped with four (1S)-(-)-camphanic-ester groups.

摘要

钴卟啉催化的分子内环合C-H键胺化反应能够从脂肪族叠氮化物直接合成各种氮杂环化合物。吡咯烷、恶唑烷、咪唑烷、异吲哚啉和四氢异喹啉可以通过单一反应步骤,使用对空气和湿气稳定的催化剂,以良好到优异的产率得到。该反应的动力学研究结合密度泛函理论计算揭示了一种金属自由基型机理,涉及限速的叠氮化物活化以形成关键的钴(III)-氮烯自由基中间体。随后,苄基C-H键向氮烯自由基中间体进行低势垒分子内氢原子转移,接着发生自由基反弹步骤,从而形成所需的氮杂环产物。动力学同位素竞争实验与自由基型C-H键活化步骤(分子内动力学同位素效应=7)一致,该步骤在限速叠氮化物活化步骤之后发生。使用二叔丁基二碳酸酯(BocO)通过防止形成的胺产物的竞争性结合,显著提高了反应速率。在这些条件下,反应在[催化剂]和[叠氮化物底物]中均呈现出清晰的一级动力学,而在[BocO]中为零级动力学。使用配备四个(1S)-(-)-樟脑酸酯基团的新型手性钴卟啉催化剂,在(4-叠氮丁基)苯的环合反应中可以实现适度的对映选择性(在100-80℃温度范围内,对映体过量为29-46%)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7dd0/5488222/a36a63d8d46d/CHEM-23-7945-g001.jpg

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