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Updated: Oct 8, 2026

Retropinacol/Cross-pinacol Coupling Reactions - A Catalytic Access to 1,2-Unsymmetrical Diols
Published on: April 4, 2014
Pd/Tl Bimetal-Catalyzed C8-H Alkenylation of Dimethoxycoumarins
Takahiro Yamada1, Rinka Fujita1, Ayaka Kishino1
1Kobe Pharmaceutical University, 4-19-1, Motoyamakita, Higashinada, Kobe658-8558, Japan.
Abstract:
A Pd/Tl bimetallic catalytic method for the regioselective C8-H alkenylation of dimethoxycoumarin scaffolds was developed. The synergistic effects of Tl(OCOCF3)3 and a Pd-thioether ligand catalytic system enabled electrophilic C-H bond activation, followed by Heck-type alkenylation at the C8 position of the coumarin ring, affording a series of C8-alkenylated dimethoxycoumarin derivatives in yields of up to 90%. Notably, the bimetallic catalytic system promoted electrophilic C-H activation of electron-rich coumarin scaffolds using only a catalytic amount of Tl(OCOCF3)3, enabling efficient C-H functionalization of the benzene moiety with excellent regioselectivity. This method provides a versatile and step-economical approach to highly functionalized coumarins and serves as a complementary strategy for the late-stage functionalization of coumarin-based natural products and fluorescent compounds.
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The reaction begins with transferring a proton from the acid catalyst to one of the hydroxyl groups, producing an oxonium ion.