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Inter- and Intra-Molecular Organocatalysis of S(N)2 Fluorination by Crown Ether: Kinetics and Quantum Chemical Analysis

We present the intra- and inter-molecular organocatalysis of S(N)2 fluorination using CsF by crown ether to estimate the efficacy of the promoter and to elucidate the reaction mechanism. The yields of intramolecular S(N)2 fluorination of the veratrole substrates are measured to be very small (<1%...

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Autores principales: Oh, Young-Ho, Yun, Wonhyuck, Kim, Chul-Hee, Jang, Sung-Woo, Lee, Sung-Sik, Lee, Sungyul, Kim, Dong-Wook
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8156096/
https://www.ncbi.nlm.nih.gov/pubmed/34063489
http://dx.doi.org/10.3390/molecules26102947
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author Oh, Young-Ho
Yun, Wonhyuck
Kim, Chul-Hee
Jang, Sung-Woo
Lee, Sung-Sik
Lee, Sungyul
Kim, Dong-Wook
author_facet Oh, Young-Ho
Yun, Wonhyuck
Kim, Chul-Hee
Jang, Sung-Woo
Lee, Sung-Sik
Lee, Sungyul
Kim, Dong-Wook
author_sort Oh, Young-Ho
collection PubMed
description We present the intra- and inter-molecular organocatalysis of S(N)2 fluorination using CsF by crown ether to estimate the efficacy of the promoter and to elucidate the reaction mechanism. The yields of intramolecular S(N)2 fluorination of the veratrole substrates are measured to be very small (<1% in 12 h) in the absence of crown ether promoters, whereas the S(N)2 fluorination of the substrate possessing a crown ether unit proceeds to near completion (~99%) in 12 h. We also studied the efficacy of intermolecular rate acceleration by an independent promoter 18-crown-6 for comparison. We find that the fluorinating yield of a veratrole substrate (leaving group = −OMs) in the presence of 18-crown-6 follows the almost identical kinetic course as that of intramolecular S(N)2 fluorination, indicating the mechanistic similarity of intra- and inter-molecular organocatalysis of the crown ether for S(N)2 fluorination. The calculated relative Gibbs free energies of activation for these reactions, in which the crown ether units act as Lewis base promoters for S(N)2 fluorination, are in excellent agreement with the experimentally measured yields of fluorination. The role of the metal salt CsF is briefly discussed in terms of whether it reacts as a contact ion pair or as a “free” nucleophile F(−).
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spelling pubmed-81560962021-05-28 Inter- and Intra-Molecular Organocatalysis of S(N)2 Fluorination by Crown Ether: Kinetics and Quantum Chemical Analysis Oh, Young-Ho Yun, Wonhyuck Kim, Chul-Hee Jang, Sung-Woo Lee, Sung-Sik Lee, Sungyul Kim, Dong-Wook Molecules Article We present the intra- and inter-molecular organocatalysis of S(N)2 fluorination using CsF by crown ether to estimate the efficacy of the promoter and to elucidate the reaction mechanism. The yields of intramolecular S(N)2 fluorination of the veratrole substrates are measured to be very small (<1% in 12 h) in the absence of crown ether promoters, whereas the S(N)2 fluorination of the substrate possessing a crown ether unit proceeds to near completion (~99%) in 12 h. We also studied the efficacy of intermolecular rate acceleration by an independent promoter 18-crown-6 for comparison. We find that the fluorinating yield of a veratrole substrate (leaving group = −OMs) in the presence of 18-crown-6 follows the almost identical kinetic course as that of intramolecular S(N)2 fluorination, indicating the mechanistic similarity of intra- and inter-molecular organocatalysis of the crown ether for S(N)2 fluorination. The calculated relative Gibbs free energies of activation for these reactions, in which the crown ether units act as Lewis base promoters for S(N)2 fluorination, are in excellent agreement with the experimentally measured yields of fluorination. The role of the metal salt CsF is briefly discussed in terms of whether it reacts as a contact ion pair or as a “free” nucleophile F(−). MDPI 2021-05-15 /pmc/articles/PMC8156096/ /pubmed/34063489 http://dx.doi.org/10.3390/molecules26102947 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Oh, Young-Ho
Yun, Wonhyuck
Kim, Chul-Hee
Jang, Sung-Woo
Lee, Sung-Sik
Lee, Sungyul
Kim, Dong-Wook
Inter- and Intra-Molecular Organocatalysis of S(N)2 Fluorination by Crown Ether: Kinetics and Quantum Chemical Analysis
title Inter- and Intra-Molecular Organocatalysis of S(N)2 Fluorination by Crown Ether: Kinetics and Quantum Chemical Analysis
title_full Inter- and Intra-Molecular Organocatalysis of S(N)2 Fluorination by Crown Ether: Kinetics and Quantum Chemical Analysis
title_fullStr Inter- and Intra-Molecular Organocatalysis of S(N)2 Fluorination by Crown Ether: Kinetics and Quantum Chemical Analysis
title_full_unstemmed Inter- and Intra-Molecular Organocatalysis of S(N)2 Fluorination by Crown Ether: Kinetics and Quantum Chemical Analysis
title_short Inter- and Intra-Molecular Organocatalysis of S(N)2 Fluorination by Crown Ether: Kinetics and Quantum Chemical Analysis
title_sort inter- and intra-molecular organocatalysis of s(n)2 fluorination by crown ether: kinetics and quantum chemical analysis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8156096/
https://www.ncbi.nlm.nih.gov/pubmed/34063489
http://dx.doi.org/10.3390/molecules26102947
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