In sharp contrast to hypervalent iodine(III) compounds, the isoelectronic bromine(III) counterparts have been little studied to date. This knowledge gap is mainly attributed to the difficult-to-control reactivity of λ -bromanes as well as to their challenging preparation from the highly toxic and corrosive BrF precursor. In this context, we present a straightforward and scalable approach to chelation-stabilized λ -bromanes by anodic oxidation of parent aryl bromides possessing two coordinating hexafluoro-2-hydroxypropanyl substituents. A series of para-substituted λ -bromanes with remarkably high redox potentials spanning a range from 1.86 V to 2.60 V vs. Ag/AgNO was synthesized by the electrochemical method. We demonstrate that the intrinsic reactivity of the bench-stable bromine(III) species can be unlocked by addition of a Lewis or a Brønsted acid. The synthetic utility of the λ -bromane activation is exemplified by oxidative C-C, C-N, and C-O bond forming reactions.
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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8362160 | PMC |
http://dx.doi.org/10.1002/anie.202104677 | DOI Listing |
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