A novel class of tunable cyclopropanation reagents (RXZnCH2Y) and their synthetic applications

The Simmons-Smith cyclopropanation is a widely used method to synthesize cyclopropanes from alkenes using methylene iodide and a zinc reagent. A novel class of organozinc species, RXZnCH 2 Y, has been found to efficiently cyclopropanate alkenes, including traditionally unreactive unfunctionalized al...

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Veröffentlicht in:Organic & biomolecular chemistry 2012-08, Vol.1 (29), p.5498-5513
Hauptverfasser: Cornwall, Richard G, Wong, O. Andrea, Du, Haifeng, Ramirez, Thomas A, Shi, Yian
Format: Artikel
Sprache:eng
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Zusammenfassung:The Simmons-Smith cyclopropanation is a widely used method to synthesize cyclopropanes from alkenes using methylene iodide and a zinc reagent. A novel class of organozinc species, RXZnCH 2 Y, has been found to efficiently cyclopropanate alkenes, including traditionally unreactive unfunctionalized alkenes. The reactivity and selectivity of this class of organozinc reagents can be regulated by tuning the electronic and/or steric nature of the RX group attached to Zn. During recent years, this class of organozinc reagent has been widely used in organic synthesis as a reagent for cyclopropanation and other useful synthetic transformations. Catalytic, asymmetric versions of this reaction have been developed providing high enantiomeric excess for unfunctionalized olefins. A novel class of tunable cyclopropanating reagents has been shown to efficiently cyclopropanate alkenes and has been widely used in organic synthesis.
ISSN:1477-0520
1477-0539
DOI:10.1039/c2ob25481f