Guo Yujing, Pei Chao, Koenigs Rene M
Institute of Organic Chemistry, RWTH Aachen University, Landoltweg 1, D-52074, Aachen, Germany.
Nat Commun. 2022 Jan 10;13(1):86. doi: 10.1038/s41467-021-27687-6.
Nitrene transfer reactions represent one of the key reactions to rapidly construct new carbon-nitrogen bonds and typically require transition metal catalysts to control the reactivity of the pivotal nitrene intermediate. Herein, we report on the application of iminoiodinanes in amination reactions under visible light photochemical conditions. While a triplet nitrene can be accessed under catalyst-free conditions, the use of a suitable photosensitizer allows the access of a nitrene radical anion. Computational and mechanistic studies rationalize the access and reactivity of triplet nitrene and nitrene radical anion and allow the direct comparison of both amination reagents. We conclude with applications of both reagents in organic synthesis and showcase their reactivity in the reaction with olefins, which underline their markedly distinct reactivity. Both reagents can be accessed under mild reaction conditions at room temperature without the necessity to exclude moisture or air, which renders these metal-free, photochemical amination reactions highly practical.
氮宾转移反应是快速构建新碳氮键的关键反应之一,通常需要过渡金属催化剂来控制关键氮宾中间体的反应活性。在此,我们报道了亚碘酰亚胺在可见光光化学条件下的胺化反应中的应用。虽然在无催化剂条件下可以得到三线态氮宾,但使用合适的光敏剂可以得到氮宾自由基阴离子。计算和机理研究解释了三线态氮宾和氮宾自由基阴离子的产生及其反应活性,并能对这两种胺化试剂进行直接比较。我们最后介绍了这两种试剂在有机合成中的应用,并展示了它们在与烯烃反应中的反应活性,突出了它们明显不同的反应活性。这两种试剂都可以在室温下的温和反应条件下制备,无需排除水分或空气,这使得这些无金属光化学胺化反应具有很高的实用性。