The dearomative functionalization of aromatic compounds represents a fascinating but challenging transformation, as it typically needs to overcome a great kinetic barrier. Here, a catalyst-free dearomative rearrangement of o-nitrophenyl alkyne is successfully established by leveraging the remote oxygen transposition and a weak N-O bond acceleration. This reaction features high atom-, step- and redox-economy, which provides a divergent entry to a series of biologically important benzazepines and bridged polycycloalkanones. The reaction is proposed to proceed through a tandem oxygen transfer cyclization/(3â+â2) cycloaddition/(homo-)hetero-Claisen rearrangement reaction. The resulting polycyclic system is richly decorated with transformable functionalities, such as carbonyl, imine and diene, which enables diversity-oriented synthesis of alkaloid-like polycyclic framework.
Divergent synthesis of benzazepines and bridged polycycloalkanones via dearomative rearrangement.
通过去芳构化重排反应合成苯并氮杂卓和桥环多环烷酮
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作者:Shi Qiu, Liao Zhehui, Liu Zhili, Wen Jiajia, Li Chenguang, He Jiamin, Deng Jiazhen, Cen Shan, Cao Tongxiang, Zhou Jinming, Zhu Shifa
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2022 | 起止号: | 2022 Jul 29; 13(1):4402 |
| doi: | 10.1038/s41467-022-31920-1 | ||
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