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Journal
Publications |
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Synthesis of highly substituted pyrrolidines via palladium-catalyzed
cyclization of 5-vinyloxazolidinones and activated alkenes
Julian G. Knight, Paul A.
Stoker, Kirill Tchabanenko, Simon J. Harwood, Kenneth W.M. Lawrie,
Tetrahedron,
2008,
64, 3744. |
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Abstract:
N-Tosyl-5,5-divinyloxazolidin-2-one
undergoes a palladium-catalyzed decarboxylative cyclization across a
range of electrophilic alkenes to give the corresponding pyrrolidine
derivatives bearing two contiguous quaternary centres. Alkenes bearing
two electron-withdrawing groups are required; pyrrolidines were not
formed from mono-activated alkenes. Bulky, electron-rich phosphines
promote pyrrolidine formation with less highly electrophilic, doubly
activated alkenes, and a dramatic improvement is observed in the
presence of iodide.
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