Publication | Open Access
Alkoxyboration: Ring-Closing Addition of B–O σ Bonds across Alkynes
116
Citations
38
References
2014
Year
Asymmetric CatalysisGold Catalysis StrategyEngineeringAlkene MetathesisNatural SciencesDiversity-oriented SynthesisOrganic ChemistryBoron-x σ BondsCatalysisOrganoboron ReagentsChemistryOrganometallic CatalysisRing-closing AdditionBiomolecular Engineering
For nearly 70 years, the addition of boron-X σ bonds to carbon-carbon multiple bonds has been employed in the preparation of organoboron reagents. However, the significantly higher strength of boron-oxygen bonds has thus far precluded their activation for addition, preventing a direct route to access a potentially valuable class of oxygen-containing organoboron reagents for divergent synthesis. We herein report the realization of an alkoxyboration reaction, the addition of boron-oxygen σ bonds to alkynes. Functionalized O-heterocyclic boronic acid derivatives are produced using this transformation, which is mild and exhibits broad functional group compatibility. Our results demonstrate activation of this boron-O σ bond using a gold catalysis strategy that is fundamentally different from that used previously for other boron addition reactions.
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