Pd/Tl Bimetal-Catalyzed C8–H Alkenylation of Dimethoxycoumarins

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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Publication Details

Journal
The Journal of Organic Chemistry
Published
2026-10-06
DOI
https://doi.org/10.1021/acs.joc.6c01609
Primary Topic
Catalytic C–H Functionalization Methods
Type
article
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article

Pd/Tl Bimetal-Catalyzed C8–H Alkenylation of Dimethoxycoumarins

Masafumi Ueda, Takahiro Yamada, Norihiko Takeda, Rinka Fujita et al.
The Journal of Organic Chemistry
Catalytic C–H Functionalization Methods
article

Pd/Tl Bimetal-Catalyzed C8–H Alkenylation of Dimethoxycoumarins

Masafumi Ueda, Takahiro Yamada, Norihiko Takeda, Rinka Fujita, 彩花 岸野
article en

Abstract

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.

The Journal of Organic Chemistry
Kobe Pharmaceutical University (JP)
Openalex Percentile: Top 24%
Catalytic C–H Functionalization Methods
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