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Enyne Metathesis–Oxidation Sequence for the Synthesis of 2‐Phosphono Pyrroles: Proof of the “Yne‐then‐Ene” Pathway
64
Citations
41
References
2006
Year
Situ OxidationNew Ruthenium CarbeneBiosynthesisEnyne Metathesis–oxidation SequenceEngineeringAlkene MetathesisOrganic ChemistryStereoselective SynthesisChemistryHeterocycle Chemistry2-Phosphono PyrrolesSynthetic ChemistryEnantioselective SynthesisBiomolecular Engineering
A new tandem reaction sequence has been developed for the synthesis of 2-phosphono pyrroles. The sequence consists of ring-closing enyne metathesis of a substituted aminophosphonate, containing a terminal alkyne and an internal alkene, in combination with in situ oxidation of the produced 3-pyrrolines using tetrachloroquinone. By analyzing the formation of the end and certain byproducts, taking into account the difference in reactivity of different substrates and carefully studying spectroscopic data, it was found that the reaction proceeds by means of the "yne-then-ene" pathway. During the initiation phase, a new ruthenium carbene is formed which continues the propagation cycle.
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