Computational Study of a Copper-Catalyzed Synthesis of Fluoroalcohols from Alkylboranes and Ketones

Autor/a

Gómez-Mudarra, Francisco A.

Aullón López, Gabriel

Jover Modrego, Jesús

Fecha de publicación

2025-11-05T19:35:08Z

2025-11-05T19:35:08Z

2025-09-03

2025-11-05T19:35:09Z



Resumen

Fluoroalcohols are a class of organic compounds containing one or more fluorine atoms together with an alcohol group in their molecular structure. These fluorinated species have a wide range of applications due to their unique properties and are used in medicine and electronics. Herein, we propose a new synthetic procedure, promoted by a copper(I) catalyst, for preparing fluoroalcohols from alkylboranes and symmetric ketones. The reaction has been computationally explored to propose a plausible mechanism, which allows identifying the rate-limiting step and quantitatively evaluating the electronic effects of each substrate on the overall reactivity. These DFT calculations suggest that the combination of electron-poor ketones with electron-rich alkylboranes produce the most efficient catalytic systems for preparing fluoroalcohols. Microkinetic modeling of the studied systems allow the prediction of the activation barrier limit to achieve fully functional reactions and multilinear regression techniques provide a methodology to estimate the overall reaction barriers in a simple manner, opening the way for proposing new catalytic systems.

Tipo de documento

Artículo
Versión publicada

Lengua

Inglés

Materias y palabras clave

Reaccions d'addició; Cetones; Hidrocarburs; Addition reactions; Ketones; Hydrocarbons

Publicado por

American Chemical Society

Documentos relacionados

Reproducció del document publicat a: https://doi.org/https://doi.org/10.1021/acs.joc.5c01174

Journal of Organic Chemistry, 2025, vol. 90, num.36, p. 1520-6904

https://doi.org/https://doi.org/10.1021/acs.joc.5c01174

Derechos

cc-by (c) Gómez-Mudarra, Francisco A., et al., 2025

http://creativecommons.org/licenses/by/3.0/es/