A method for the synthesis of allyl
substituted γ-butenolides
via carbonyl ylide rearrangement of vinyl sulfoxonium ylide-derived
carbenes has been developed. At rt, the mechanism involves a carbonyl
ylide generation/allyloxy furan formation/[3,3]-sigmatropic rearrangement/isomerization
sequence for the generation of 3-allyl butenolides. At 70 °C,
instead of the final isomerization step, the resulting [3,3]-sigmatropic
rearrangement product undergoes further [3,3]-sigmatropic rearrangement
to produce 5-allyl butenolide. In the absence of the catalyst, the
reaction affords a diene via [2,3]-sigmatropic rearrangement.
In this review, the coupling of two carbene precursors for the synthesis of alkenes is surveyed.The key to selective carbene coupling is the difference in the rate of carbene generation between the two carbene precursors. This strategy requires judicious selection between two carbene precursors as well as fine-tuning of reaction conditions to obtain the desired chemo-and stereoselectivity. These couplings were carried out in the presence and absence of a metal catalyst. The present review describes inter-and intramolecular coupling of diazo compounds and cross-coupling between diazo and non-diazo compounds.
1.Introduction 2.
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