Diastereodivergent nucleophile–nucleophile alkene chlorofluorination

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Abstract

The selective hetero-dihalogenation of alkenes provides useful building blocks for a broad range of chemical applications. Unlike homo-dihalogenation, selective hetero-dihalogenation reactions, especially fluorohalogenation, are underdeveloped. Current approaches combine an electrophilic halogen source with a nucleophilic halogen source, which necessarily leads to anti-addition, and regioselectivity has only been achieved using highly activated alkenes. Here we describe an alternative, nucleophile–nucleophile approach that adds chloride and fluoride ions over unactivated alkenes in a highly regio-, chemo- and diastereoselective manner. A curious switch in the reaction mechanism was discovered, which triggers a complete reversal of the diastereoselectivity to promote either anti- or syn-addition. The conditions are demonstrated on an array of pharmaceutically relevant compounds, and detailed mechanistic studies reveal the selectivity and the switch between the syn- and anti-diastereomers are based on different active iodanes and which of the two halides adds first. (Figure presented.)

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Doobary, S., Lacey, A. J. D., Sweeting, S. G., Coppock, S. B., Caldora, H. P., Poole, D. L., & Lennox, A. J. J. (2024). Diastereodivergent nucleophile–nucleophile alkene chlorofluorination. Nature Chemistry, 16(10), 1647–1655. https://doi.org/10.1038/s41557-024-01561-6

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