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Controlling the site-selectivity of C-H functionalization is of significant importance and a formidable undertaking in synthetic organic chemistry, motivating the continuing development of efficient and sustainable technologies for activating C-H bonds. However, methods that control the site-selectivity for double C-H functionalization are rare. We herein report a conceptually new method to achieve highly site-selective C-H functionalization by implementing a radical single-out strategy. Leveraging the steric hindrance-sensitive CO-insertion as the radical differentiation process, a site-selective and stereoselective carbonylative formal 2 + 2 cycloaddition of imines and alkenes by sequential double allylic C-H bond activation was established without special and complicated HAT-reagents. This reaction was compatible with a wide range of alkenes and imines with diverse skeletons to deliver allylic β-lactams that are of synthetic and medicinal interest.
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Yongzheng Ding
University of Science and Technology of China
Jianing Wu
Sun Yat-sen University
Tianze Zhang
Nankai University
Journal of the American Chemical Society
University of Science and Technology of China
Hefei National Center for Physical Sciences at Nanoscale
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Ding et al. (Tue,) studied this question.
synapsesocial.com/papers/68e60e3db6db6435875a0d25 — DOI: https://doi.org/10.1021/jacs.4c05360
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