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Asymmetric Synthesis of Spirooxindoles via Nucleophilic Epoxidation Promoted by Bifunctional Organocatalysts

Taking into account the postulated reaction mechanism for the organocatalytic epoxidation of electron-poor olefins developed by our laboratory, we have investigated the key factors able to positively influence the H-bond network installed inside the substrate/catalyst/oxidizing agent. With this aim,...

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Autores principales: Miceli, Martina, Mazziotta, Andrea, Palumbo, Chiara, Roma, Elia, Tosi, Eleonora, Longhi, Giovanna, Abbate, Sergio, Lupattelli, Paolo, Mazzeo, Giuseppe, Gasperi, Tecla
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6017607/
https://www.ncbi.nlm.nih.gov/pubmed/29462935
http://dx.doi.org/10.3390/molecules23020438
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author Miceli, Martina
Mazziotta, Andrea
Palumbo, Chiara
Roma, Elia
Tosi, Eleonora
Longhi, Giovanna
Abbate, Sergio
Lupattelli, Paolo
Mazzeo, Giuseppe
Gasperi, Tecla
author_facet Miceli, Martina
Mazziotta, Andrea
Palumbo, Chiara
Roma, Elia
Tosi, Eleonora
Longhi, Giovanna
Abbate, Sergio
Lupattelli, Paolo
Mazzeo, Giuseppe
Gasperi, Tecla
author_sort Miceli, Martina
collection PubMed
description Taking into account the postulated reaction mechanism for the organocatalytic epoxidation of electron-poor olefins developed by our laboratory, we have investigated the key factors able to positively influence the H-bond network installed inside the substrate/catalyst/oxidizing agent. With this aim, we have: (i) tested a few catalysts displaying various effects that noticeably differ in terms of steric hindrance and electron demand; (ii) employed α-alkylidene oxindoles decorated with different substituents on the aromatic ring (11a–g), the exocylic double bond (11h–l), and the amide moiety (11m–v). The observed results suggest that the modification of the electron-withdrawing group (EWG) weakly conditions the overall outcomes, and conversely a strong influence is unambiguously ascribable to either the N-protected or N-unprotected lactam framework. Specifically, when the NH free substrates (11m–u) are employed, an inversion of the stereochemical control is observed, while the introduction of a Boc protecting group affords the desired product 12v in excellent enantioselectivity (97:3 er).
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spelling pubmed-60176072018-11-13 Asymmetric Synthesis of Spirooxindoles via Nucleophilic Epoxidation Promoted by Bifunctional Organocatalysts Miceli, Martina Mazziotta, Andrea Palumbo, Chiara Roma, Elia Tosi, Eleonora Longhi, Giovanna Abbate, Sergio Lupattelli, Paolo Mazzeo, Giuseppe Gasperi, Tecla Molecules Article Taking into account the postulated reaction mechanism for the organocatalytic epoxidation of electron-poor olefins developed by our laboratory, we have investigated the key factors able to positively influence the H-bond network installed inside the substrate/catalyst/oxidizing agent. With this aim, we have: (i) tested a few catalysts displaying various effects that noticeably differ in terms of steric hindrance and electron demand; (ii) employed α-alkylidene oxindoles decorated with different substituents on the aromatic ring (11a–g), the exocylic double bond (11h–l), and the amide moiety (11m–v). The observed results suggest that the modification of the electron-withdrawing group (EWG) weakly conditions the overall outcomes, and conversely a strong influence is unambiguously ascribable to either the N-protected or N-unprotected lactam framework. Specifically, when the NH free substrates (11m–u) are employed, an inversion of the stereochemical control is observed, while the introduction of a Boc protecting group affords the desired product 12v in excellent enantioselectivity (97:3 er). MDPI 2018-02-16 /pmc/articles/PMC6017607/ /pubmed/29462935 http://dx.doi.org/10.3390/molecules23020438 Text en © 2018 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Miceli, Martina
Mazziotta, Andrea
Palumbo, Chiara
Roma, Elia
Tosi, Eleonora
Longhi, Giovanna
Abbate, Sergio
Lupattelli, Paolo
Mazzeo, Giuseppe
Gasperi, Tecla
Asymmetric Synthesis of Spirooxindoles via Nucleophilic Epoxidation Promoted by Bifunctional Organocatalysts
title Asymmetric Synthesis of Spirooxindoles via Nucleophilic Epoxidation Promoted by Bifunctional Organocatalysts
title_full Asymmetric Synthesis of Spirooxindoles via Nucleophilic Epoxidation Promoted by Bifunctional Organocatalysts
title_fullStr Asymmetric Synthesis of Spirooxindoles via Nucleophilic Epoxidation Promoted by Bifunctional Organocatalysts
title_full_unstemmed Asymmetric Synthesis of Spirooxindoles via Nucleophilic Epoxidation Promoted by Bifunctional Organocatalysts
title_short Asymmetric Synthesis of Spirooxindoles via Nucleophilic Epoxidation Promoted by Bifunctional Organocatalysts
title_sort asymmetric synthesis of spirooxindoles via nucleophilic epoxidation promoted by bifunctional organocatalysts
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6017607/
https://www.ncbi.nlm.nih.gov/pubmed/29462935
http://dx.doi.org/10.3390/molecules23020438
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