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The photocatalytic iodofluoroalkylation of unsaturated systems is of great interest, with significant potential in the synthesis of fluorinated compounds. Herein, we introduce a selenate-protected hydride cluster, [CuH(dppy)(PhCHSe)](PF) (dppy = diphenyl-2-pyridylphosphine, PhCHSe = benzylselenate), that enables visible light-mediated iodofluoroalkylative difunctionalization of alkynes. Single crystal X-ray structural analysis reveals that the cluster comprises a hydride-embedded hexagonal close-packed Cu kernel of the symmetry, coprotected by benzylselenate and dppy ligands. Mechanistic studies suggest the reaction proceeds through a single-electron-transfer process from the photoexcited state [are similar to those reported in The [] complexes then further oxidize the vinyl radicals to form vinyl cations, completing the redox-neutral catalytic cycle. This work presents an efficient method for synthesizing fluoroalkylated iodoalkenes and offers valuable insights into the design of catalytically active metal clusters for the advancement of organic synthesis.
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http://dx.doi.org/10.1021/acs.inorgchem.5c01517 | DOI Listing |
Inorg Chem
July 2025
State Key Laboratory of Bioactive Molecules and Druggability Assessment, Guangdong Basic Research Center of Excellence for Natural Bioactive Molecules and Discovery of Innovative Drugs, College of Chemistry and Materials Science, and Guangdong Provincial Key Laboratory of Supramolecular Coordination
The photocatalytic iodofluoroalkylation of unsaturated systems is of great interest, with significant potential in the synthesis of fluorinated compounds. Herein, we introduce a selenate-protected hydride cluster, [CuH(dppy)(PhCHSe)](PF) (dppy = diphenyl-2-pyridylphosphine, PhCHSe = benzylselenate), that enables visible light-mediated iodofluoroalkylative difunctionalization of alkynes. Single crystal X-ray structural analysis reveals that the cluster comprises a hydride-embedded hexagonal close-packed Cu kernel of the symmetry, coprotected by benzylselenate and dppy ligands.
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