Metal silylenes generated by double silicon-hydrogen activation: key intermediates in the rhodium-catalyzed hydrosilylation of ketones : dedicated to Professor Helmut Werner on the occasion of his 75th birthday
Rhodium silylenes, which are generated by double Si-H activation at the metal, are involved in a low-activation-barrier mechanism of the hydrosilylation of ketones with R2SiH2. A DFT-based study of reaction mechanisms accounts for the experimental observations, notably the rate enhancement for R2SiH...
Gespeichert in:
| Hauptverfasser: | , , , , , |
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| Dokumenttyp: | Article (Journal) Festschrift |
| Sprache: | Englisch |
| Veröffentlicht: |
2009
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| In: |
Angewandte Chemie. International edition
Year: 2009, Jahrgang: 48, Heft: 9, Pages: 1609-1613 |
| ISSN: | 1521-3773 |
| DOI: | 10.1002/anie.200804993 |
| Schlagworte: | |
| Online-Zugang: | Verlag, lizenzpflichtig, Volltext: https://doi.org/10.1002/anie.200804993 Verlag, lizenzpflichtig, Volltext: https://onlinelibrary.wiley.com/doi/abs/10.1002/anie.200804993 |
| Verfasserangaben: | Nathanaëlle Schneider, Markus Finger, Christian Haferkemper, Stéphane Bellemin-Laponnaz, Peter Hofmann, and Lutz H. Gade |
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| 520 | |a Rhodium silylenes, which are generated by double Si-H activation at the metal, are involved in a low-activation-barrier mechanism of the hydrosilylation of ketones with R2SiH2. A DFT-based study of reaction mechanisms accounts for the experimental observations, notably the rate enhancement for R2SiH2 over R3SiH and an inverse kinetic isotope effect. | ||
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