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Título

Enantiodivergent Cyclization by Inversion of the Reactivity in Ambiphilic Molecules

AutorRodríguez-López, Julio; Brovetto, Margarita; Martín, Víctor S. CSIC ORCID; Martín, Tomás CSIC ORCID
Palabras claveAmbiphilic molecules
Cyclic ethers
Enantiodivergent reactions
Epoxides
Nicholas reaction
Fecha de publicación21-sep-2020
EditorWiley-VCH
CitaciónAngewandte Chemie 59 (39): 17077-17083 (2020)
ResumenInverting the reactivity of the functional groups in ambiphilic molecules provides a new synthetic strategy to perform late-stage enantiodivergence. Both enantiomers of the final compound can be obtained from a common chiral precursor. As a proof of concept, the synthesis of substituted five- and six-membered oxacycles is described. The key step is the cyclization of an ambiphilic linear precursor bearing a propargylic alcohol and an epoxide linked through an alkyl chain. Through a slight modification of these linear precursors and employing different reaction conditions, these functional groups can inverse their chemical reactivity, producing one enantiomer or another of the final product. This enantiodivergent cyclization involves three stereogenic centers that can undergo fully controlled retention or inversion of their configuration depending on the cyclization pathway that is activated. The cyclization provides late-stage enantiodivergence, enabling the synthesis of either enantiomers of the oxacycles from a common chiral substrate with total transfer of the enantiomeric purity.
Versión del editorhttp://dx.doi.org/10.1002/ange.202006650
URIhttp://hdl.handle.net/10261/225471
DOI10.1002/ange.202006650
Identificadoresdoi: 10.1002/ange.202006650
e-issn: 1521-3757
issn: 0044-8249
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