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有机催化氮宾转移:由亚胺盐催化的无金属选择性分子间C(sp)-H胺化反应

Organocatalytic nitrenoid transfer: metal-free selective intermolecular C(sp)-H amination catalyzed by an iminium salt.

作者信息

Combee Logan A, Raya Balaram, Wang Daoyong, Hilinski Michael K

机构信息

Department of Chemistry , University of Virginia , Charlottesville , Virginia 22904-4319 , USA . Email:

出版信息

Chem Sci. 2017 Nov 27;9(4):935-939. doi: 10.1039/c7sc03968a. eCollection 2018 Jan 28.

Abstract

This report details the first organocatalytic method for nitrenoid transfer and its application to intermolecular, site-selective C(sp)-H amination. The method utilizes a trifluoromethyl iminium salt as the catalyst, iminoiodinanes as the nitrogen source, and substrate as the limiting reagent. Activated, benzylic, and aliphatic substrates can all be selectively functionalized in yields up to 87%. A mechanistic proposal for the observed reactivity supported by experimental evidence invokes the intermediacy of a diaziridinium salt or related organic nitrenoid, species that have not been previously explored for the purpose of C-H amination. Finally, examples of late-stage functionalization of complex molecules highlight the selectivity and potential utility of this catalytic method in synthesis.

摘要

本报告详细介绍了首例用于氮宾转移的有机催化方法及其在分子间、位点选择性C(sp)-H胺化反应中的应用。该方法使用三氟甲基亚胺盐作为催化剂,亚胺碘烷作为氮源,底物作为限量试剂。活化的、苄基的和脂肪族底物均可实现选择性官能化,产率高达87%。由实验证据支持的关于所观察到的反应活性的机理推测涉及重氮环丁烷盐或相关有机氮宾的中间体,这些物种此前尚未用于C-H胺化反应。最后,复杂分子后期官能化的实例突出了这种催化方法在合成中的选择性和潜在实用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1a94/5874695/d36c1dd6d020/c7sc03968a-s1.jpg

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