Enantioselective Copper‐Catalyzed Carboetherification of Unactivated Alkenes

Michael T. Bovino, Timothy W. Liwosz, Nicole E. Kendel, Yan Miller, Nina Tymińska, Eva Zurek, Sherry R. Chemler

Angewandte Chemie International Edition · 2014 · 94 citations · 41 references

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Abstract

Chiral saturated oxygen heterocycles are important components of bioactive compounds. Cyclization of alcohols onto pendant alkenes is a direct route to their synthesis, but few catalytic enantioselective methods enabling cyclization onto unactivated alkenes exist. Herein reported is a highly efficient copper-catalyzed cyclization of γ-unsaturated pentenols which terminates in C-C bond formation, a net alkene carboetherification. Both intra- and intermolecular C-C bond formations are demonstrated, thus yielding functionalized chiral tetrahydrofurans as well as fused-ring and bridged-ring oxabicyclic products. Transition-state calculations support a cis-oxycupration stereochemistry-determining step.

References

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