The final steps of the oppolzer cyclization: Mechanism of the insertion of alkenes into allylpalladium(II) complexes

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Abstract

We report here the results of a computational study on the the mechanism of the Oppolzer cyclization. These results lead us to conclude that the insertion of olefins in Pd-allyl complexes probably takes place directly from the η3-allyl species. The presence of a phosphane ligand in the reagents plays the role of enhancing the electron density on the Pd atom; this makes the alkene moiety more reactive towards insertion by back-donation from the metal. The results also indicate that the configuration of the new stereogenic centers is fixed in the insertion of the alkene into the (η3-allyl)palladium species.

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Cárdenas, D. J., Alcamí, M., Cossío, F., Méndez, M., & Echavarren, A. M. (2003). The final steps of the oppolzer cyclization: Mechanism of the insertion of alkenes into allylpalladium(II) complexes. Chemistry - A European Journal, 9(1), 96–105. https://doi.org/10.1002/chem.200390035

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