Mechanistic Understanding of the Heterogeneous, Rhodium-Cyclic (Alkyl)(Amino)Carbene-Catalyzed (Fluoro-)Arene Hydrogenation

Recently, chemoselective methods for the hydrogenation of fluorinated, silylated, and borylated arenes have been developed providing direct access to previously unattainable, valuable products. Herein, a comprehensive study on the employed rhodium-cyclic (alkyl)­(amino)­carbene (CAAC) catalyst precu...

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Veröffentlicht in:ACS catalysis 2020-06, Vol.10 (11), p.6309-6317
Hauptverfasser: Moock, Daniel, Wiesenfeldt, Mario P, Freitag, Matthias, Muratsugu, Satoshi, Ikemoto, Satoru, Knitsch, Robert, Schneidewind, Jacob, Baumann, Wolfgang, Schäfer, Andreas H, Timmer, Alexander, Tada, Mizuki, Hansen, Michael Ryan, Glorius, Frank
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Sprache:eng
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Zusammenfassung:Recently, chemoselective methods for the hydrogenation of fluorinated, silylated, and borylated arenes have been developed providing direct access to previously unattainable, valuable products. Herein, a comprehensive study on the employed rhodium-cyclic (alkyl)­(amino)­carbene (CAAC) catalyst precursor is disclosed. Mechanistic experiments, kinetic studies, and surface-spectroscopic methods revealed supported rhodium(0) nanoparticles (NP) as the active catalytic species. Further studies suggest that CAAC-derived modifiers play a key role in determining the chemoselectivity of the hydrogenation of fluorinated arenes, thus offering an avenue for further tuning of the catalytic properties.
ISSN:2155-5435
2155-5435
DOI:10.1021/acscatal.0c01074