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Photo-induced trifunctionalization of bromostyrenes via remote radical migration reactions of tetracoordinate boron species

Author

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  • Chaokun Li

    (Fujian Province University, College of Chemistry and College of Materials Science at Fuzhou University, Fuzhou)

  • Shangteng Liao

    (Fujian Province University, College of Chemistry and College of Materials Science at Fuzhou University, Fuzhou)

  • Shanglin Chen

    (Fujian Province University, College of Chemistry and College of Materials Science at Fuzhou University, Fuzhou)

  • Nan Chen

    (Fujian Province University, College of Chemistry and College of Materials Science at Fuzhou University, Fuzhou)

  • Feng Zhang

    (Fujian Province University, College of Chemistry and College of Materials Science at Fuzhou University, Fuzhou)

  • Kai Yang

    (Fujian Province University, College of Chemistry and College of Materials Science at Fuzhou University, Fuzhou)

  • Qiuling Song

    (Fujian Province University, College of Chemistry and College of Materials Science at Fuzhou University, Fuzhou
    Institute of Next Generation Matter Transformation, College of Material Sciences Engineering, Huaqiao University
    Henan Normal University)

Abstract

Tetracoordinate boron species have emerged as radical precursors via deboronation by photo-induced single electron transfer (SET) pathway. These reactions usually produce an alkyl radical and boron-bound species, and the valuable boron species are always discarded as a by-product. Given the importance of boron species, it will be very attractive if the two parts could be incorporated into the eventual products. Herein we report a photo-catalyzed strategy in which in situ generated tetracoordinated boron species decomposed into both alkyl radicals and boron species under visible light irradiation, due to the pre-installation of a vinyl group on the aromatic ring, the newly generated alkyl radical attacks the vinyl group while leaving the boron species on ipso-position, then both radical part and boron moiety are safely incorporated into the final product. Tertiary borons, secondary borons, gem-diborons as well as 1,2-diborons, and versatile electrophiles are all well tolerated under this transformation, of note, ortho-, meta- and para-bromostyrenes all demonstrated good capabilities. The reaction portraits high atom economy, broad substrate scope, and diversified valuable products with tertiary or quaternary carbon center generated, with diborons as substrates, Csp2-B and Csp3-B are established simultaneously, which are precious synthetic building blocks in chemical synthesis.

Suggested Citation

  • Chaokun Li & Shangteng Liao & Shanglin Chen & Nan Chen & Feng Zhang & Kai Yang & Qiuling Song, 2022. "Photo-induced trifunctionalization of bromostyrenes via remote radical migration reactions of tetracoordinate boron species," Nature Communications, Nature, vol. 13(1), pages 1-12, December.
  • Handle: RePEc:nat:natcom:v:13:y:2022:i:1:d:10.1038_s41467-022-29466-3
    DOI: 10.1038/s41467-022-29466-3
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    Cited by:

    1. Yu Guo & Xiaosha Wang & Chengbo Li & Jianke Su & Jian Xu & Qiuling Song, 2023. "Decarboxylation of β-boryl NHPI esters enables radical 1,2-boron shift for the assembly of versatile organoborons," Nature Communications, Nature, vol. 14(1), pages 1-11, December.

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