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Photoinduced site-selective alkenylation of alkanes and aldehydes with aryl alkenes.


ABSTRACT: The dehydrogenative alkenylation of C-H bonds with alkenes represents an atom- and step-economical approach for olefin synthesis and molecular editing. Site-selective alkenylation of alkanes and aldehydes with the C-H substrate as the limiting reagent holds significant synthetic value. We herein report a photocatalytic method for the direct alkenylation of alkanes and aldehydes with aryl alkenes in the absence of any external oxidant. A diverse range of commodity feedstocks and pharmaceutical compounds are smoothly alkenylated in useful yields with the C-H partner as the limiting reagent. The late-stage alkenylation of complex molecules occurs with high levels of site selectivity for sterically accessible and electron-rich C-H bonds. This strategy relies on the synergistic combination of direct hydrogen atom transfer photocatalysis with cobaloxime-mediated hydrogen-evolution cross-coupling, which promises to inspire additional perspectives for selective C-H functionalizations in a green manner.

SUBMITTER: Cao H 

PROVIDER: S-EPMC7181776 | biostudies-literature | 2020 Apr

REPOSITORIES: biostudies-literature

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Photoinduced site-selective alkenylation of alkanes and aldehydes with aryl alkenes.

Cao Hui H   Kuang Yulong Y   Shi Xiangcheng X   Wong Koi Lin KL   Tan Boon Beng BB   Kwan Jeric Mun Chung JMC   Liu Xiaogang X   Wu Jie J  

Nature communications 20200423 1


The dehydrogenative alkenylation of C-H bonds with alkenes represents an atom- and step-economical approach for olefin synthesis and molecular editing. Site-selective alkenylation of alkanes and aldehydes with the C-H substrate as the limiting reagent holds significant synthetic value. We herein report a photocatalytic method for the direct alkenylation of alkanes and aldehydes with aryl alkenes in the absence of any external oxidant. A diverse range of commodity feedstocks and pharmaceutical co  ...[more]

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