A Remarkably Effective Copper(II)-Dipyridylphosphine Catalyst System for the Asymmetric Hydrosilylation of Ketones in Air

The combination of catalytic amounts of optically active dipyri-dylphosphine and CuF2along with hydride donor PhSiH3generated in situ a remarkably reactive catalyst system (substrate-to-ligand molar ratio up to 100,000) for the highly enantioselective hydrosilylation of a broad spectrum of aryl alky...

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Veröffentlicht in:Proceedings of the National Academy of Sciences - PNAS 2005-03, Vol.102 (10), p.3570-3575
Hauptverfasser: Wu, Jing, Ji, Jian-Xin, Albert S. C. Chan, Halpern, Jack
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Sprache:eng
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Zusammenfassung:The combination of catalytic amounts of optically active dipyri-dylphosphine and CuF2along with hydride donor PhSiH3generated in situ a remarkably reactive catalyst system (substrate-to-ligand molar ratio up to 100,000) for the highly enantioselective hydrosilylation of a broad spectrum of aryl alkyl ketones (up to 97% enantiomeric excess) in normal atmosphere and at mild conditions (ambient temperature to -20°C, compatible with traces of moisture) in the absence of base additives. Furthermore, a highly effective catalytic asymmetric hydrosilylation of unsymmetrical diarylketones using this catalyst system was also realized (up to 98% enantiomeric excess). The introduction of the dipyridylphosphine ligands in the air-accelerated and inexpensive metal-mediated asymmetric hydrosilylation of ketones makes the present system highly attractive and thus provides an excellent opportunity for practical applications.
ISSN:0027-8424
1091-6490
DOI:10.1073/pnas.0409043102