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Electrochemistry and Reactivity of Chelation-stabilized Hypervalent Bromine(III) Compounds

  • Nayereh Mohebbati
  • , Igors Sokolovs
  • , Philipp Woite
  • , Märt Lõkov
  • , Elisabeth Parman
  • , Mihkel Ugandi
  • , Ivo Leito*
  • , Michael Roemelt*
  • , Edgars Sūna*
  • , Robert Francke*
  • *Corresponding author for this work
    • Leibniz Institute for Catalysis
    • University of Rostock
    • Latvian Institute of Organic Synthesis
    • Humboldt University of Berlin
    • University of Tartu

    Research output: Contribution to journalArticlepeer-review

    10 Citations (Scopus)

    Abstract

    Hypervalent bromine(III) reagents possess a higher electrophilicity and a stronger oxidizing power compared to their iodine(III) counterparts. Despite the superior reactivity, bromine(III) reagents have a reputation of hard-to-control and difficult-to-synthesize compounds. This is partly due to their low stability, and partly because their synthesis typically relies on the use of the toxic and highly reactive BrF3 as a precursor. Recently, we proposed chelation-stabilized hypervalent bromine(III) compounds as a possible solution to both problems. First, they can be conveniently prepared by electro-oxidation of the corresponding bromoarenes. Second, the chelation endows bromine(III) species with increased stability while retaining sufficient reactivity, comparable to that of iodine(III) counterparts. Finally, their intrinsic reactivity can be unlocked in the presence of acids. Herein, an in-depth mechanistic study of both the electrochemical generation and the reactivity of the bromine(III) compounds is disclosed, with implications for known applications and future developments in the field.

    Original languageEnglish
    Article numbere202200974
    JournalChemistry - A European Journal
    Volume28
    Issue number42
    DOIs
    Publication statusPublished - 26 Jul 2022

    OECD Field of Science

    • 1.4 Chemical Sciences

    Keywords

    • bromane
    • cyclic voltammetry
    • hypervalent halogen
    • oxidative coupling
    • unified pH

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