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Redox-Triggered C–C Coupling of Alcohols and Vinyl Epoxides: Diastereo- and Enantioselective Formation of All-Carbon Quaternary Centers via tert-(Hydroxy)-Prenylation

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Figshare2015-12-17 更新2026-04-29 收录
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https://figshare.com/articles/dataset/Redox_Triggered_C_C_Coupling_of_Alcohols_and_Vinyl_Epoxides_Diastereo_and_Enantioselective_Formation_of_All_Carbon_Quaternary_Centers_i_via_tert_i_Hydroxy_Prenylation/2035299
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Iridium catalyzed primary alcohol oxidation triggers reductive C–O bond cleavage of isoprene oxide to form aldehyde-allyliridium pairs that combine to form products of tert-(hydroxy)-prenylation, a motif found in >2000 terpenoid natural products. Curtin–Hammett effects are exploited to enforce high levels of anti-diastereo- and enantioselectivity in the formation of an all-carbon quaternary center. The present redox-triggered carbonyl additions occur in the absence of stoichiometric byproducts, premetalated reagents, and discrete alcohol-to-aldehyde redox manipulations.
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2015-12-17
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