Palladium- and Nickel-Catalyzed Carbon−Carbon Bond Insertion Reactions with Alkylidenesilacyclopropanes

Palladium and nickel catalysts promoted highly selective carbon−carbon bond insertion reactions with di-tert-butyl-alkylidenesilacyclopropanes. Pd(PPh3)4 was demonstrated to be the optimal catalyst, allowing for a variety of carbon−carbon π-bond insertion reactions. Depending on the nature of the ca...

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Veröffentlicht in:Organometallics 2010-04, Vol.29 (7), p.1661-1669
Hauptverfasser: Buchner, Kay M, Woerpel, K. A
Format: Artikel
Sprache:eng
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Zusammenfassung:Palladium and nickel catalysts promoted highly selective carbon−carbon bond insertion reactions with di-tert-butyl-alkylidenesilacyclopropanes. Pd(PPh3)4 was demonstrated to be the optimal catalyst, allowing for a variety of carbon−carbon π-bond insertion reactions. Depending on the nature of the carbon−carbon π bond, the insertion reaction proceeded with either direct insertion into the carbon(sp2)−silicon bond or allylic transposition. Ring-substituted alkylidenesilacyclopropanes required a nickel catalyst to afford insertion products. Using Ni(cod)2 as the carbon−carbon bond insertion catalyst, new double alkyne insertion products and alkene isomerization products were observed.
ISSN:0276-7333
1520-6041
DOI:10.1021/om901042j