The intrinsic degradative α-elimination of Li carbenoids somehow complicates their use in synthesis as C1-synthons. Nevertheless, we herein report how boosting such an α-elimination is a straightforward strategy for accomplishing controlled ring-opening of epoxides to furnish the corresponding β-halohydrins. Crucial for the development of the method is the use of the eco-friendly solvent 2-MeTHF, which forces the degradation of the incipient monohalolithium, due to the very limited stabilizing effect of this solvent on the chemical integrity of the carbenoid. With this approach, high yields of the targeted compounds are consistently obtained under very high regiocontrol and, despite the basic nature of the reagents, no racemization of enantiopure materials is observed.

Taking advantage of lithium monohalocarbenoid intrinsic α-elimination in 2-MeTHF: controlled epoxide ring-opening en route to halohydrins / Ielo, Laura; Miele, Margherita; Pillari, Veronica; Senatore, Raffaele; Mirabile, Salvatore; Gitto, Rosaria; Holzer, Wolfgang; Alcántara, Andrés R.; Pace, Vittorio. - In: ORGANIC & BIOMOLECULAR CHEMISTRY. - ISSN 1477-0520. - 19:9(2021), pp. 2038-2043. [10.1039/D0OB02407D]

Taking advantage of lithium monohalocarbenoid intrinsic α-elimination in 2-MeTHF: controlled epoxide ring-opening en route to halohydrins

Pace, Vittorio
2021

Abstract

The intrinsic degradative α-elimination of Li carbenoids somehow complicates their use in synthesis as C1-synthons. Nevertheless, we herein report how boosting such an α-elimination is a straightforward strategy for accomplishing controlled ring-opening of epoxides to furnish the corresponding β-halohydrins. Crucial for the development of the method is the use of the eco-friendly solvent 2-MeTHF, which forces the degradation of the incipient monohalolithium, due to the very limited stabilizing effect of this solvent on the chemical integrity of the carbenoid. With this approach, high yields of the targeted compounds are consistently obtained under very high regiocontrol and, despite the basic nature of the reagents, no racemization of enantiopure materials is observed.
2021
Eco-friendly; Enantiopure; Halohydrins; High yield; Regiocontrol; Ring opening of epoxide; Stabilizing effects; Straightforward strategy
01 Pubblicazione su rivista::01a Articolo in rivista
Taking advantage of lithium monohalocarbenoid intrinsic α-elimination in 2-MeTHF: controlled epoxide ring-opening en route to halohydrins / Ielo, Laura; Miele, Margherita; Pillari, Veronica; Senatore, Raffaele; Mirabile, Salvatore; Gitto, Rosaria; Holzer, Wolfgang; Alcántara, Andrés R.; Pace, Vittorio. - In: ORGANIC & BIOMOLECULAR CHEMISTRY. - ISSN 1477-0520. - 19:9(2021), pp. 2038-2043. [10.1039/D0OB02407D]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1745677
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