Although radical formation from a trialkylborane is well documented, the analogous reaction mode is unknown for trihaloboranes. We have discovered the generation of bromine radicals from boron tribromide and simple proton sources, such as water ortert-butanol, under open-flask conditions. Cyclopropanes bearing a variety of substituents were hydro- and deuterio-brominated to furnish anti-Markovnikov products in a highly regioselective fashion. NMR mechanistic studies and DFT calculations point to a radical pathway instead of the conventional ionic mechanism expected for BBr3
CITATION STYLE
Gieuw, M. H., Chen, S., Ke, Z., Houk, K. N., & Yeung, Y. Y. (2020). Boron tribromide as a reagent for anti-Markovnikov addition of HBr to cyclopropanes. Chemical Science, 11(35), 9426–9433. https://doi.org/10.1039/d0sc02567d
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