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Intramolecular Nicholas Reaction Enables the Stereoselective Synthesis of Strained Cyclooctynes

Cyclic products can be obtained through the intramolecular version of the Nicholas reaction, which requires having the nucleophile connected to the alkyne unit. Here, we report the synthesis of 1-oxa-3-cyclooctynes starting from commercially available (1R,3S)-camphoric acid. The strategy is based on...

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Autores principales: Monzón, Diego M., Betancort, Juan Manuel, Martín, Tomás, Ramírez, Miguel Ángel, Martín, Víctor S., Díaz Díaz, David
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7999112/
https://www.ncbi.nlm.nih.gov/pubmed/33804118
http://dx.doi.org/10.3390/molecules26061629
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author Monzón, Diego M.
Betancort, Juan Manuel
Martín, Tomás
Ramírez, Miguel Ángel
Martín, Víctor S.
Díaz Díaz, David
author_facet Monzón, Diego M.
Betancort, Juan Manuel
Martín, Tomás
Ramírez, Miguel Ángel
Martín, Víctor S.
Díaz Díaz, David
author_sort Monzón, Diego M.
collection PubMed
description Cyclic products can be obtained through the intramolecular version of the Nicholas reaction, which requires having the nucleophile connected to the alkyne unit. Here, we report the synthesis of 1-oxa-3-cyclooctynes starting from commercially available (1R,3S)-camphoric acid. The strategy is based on the initial preparation of propargylic alcohols, complexation of the triple bond with Co(2)(CO)(8), and treatment with BF(3)·Et(2)O to induce an intramolecular Nicholas reaction with the free hydroxyl group as nucleophile. Finally, oxidative deprotection of the alkyne afforded the cyclooctynes in good yields. Notably, large-sized R substituents at the chiral center connected to the O atom were oriented in such a way that steric interactions were minimized in the cyclization, allowing the formation of cyclooctynes exclusively with (R) configuration, in good agreement with theoretical predictions. Moreover, preliminary studies demonstrated that these cyclooctynes were reactive in the presence of azides yielding substituted triazoles.
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spelling pubmed-79991122021-03-28 Intramolecular Nicholas Reaction Enables the Stereoselective Synthesis of Strained Cyclooctynes Monzón, Diego M. Betancort, Juan Manuel Martín, Tomás Ramírez, Miguel Ángel Martín, Víctor S. Díaz Díaz, David Molecules Article Cyclic products can be obtained through the intramolecular version of the Nicholas reaction, which requires having the nucleophile connected to the alkyne unit. Here, we report the synthesis of 1-oxa-3-cyclooctynes starting from commercially available (1R,3S)-camphoric acid. The strategy is based on the initial preparation of propargylic alcohols, complexation of the triple bond with Co(2)(CO)(8), and treatment with BF(3)·Et(2)O to induce an intramolecular Nicholas reaction with the free hydroxyl group as nucleophile. Finally, oxidative deprotection of the alkyne afforded the cyclooctynes in good yields. Notably, large-sized R substituents at the chiral center connected to the O atom were oriented in such a way that steric interactions were minimized in the cyclization, allowing the formation of cyclooctynes exclusively with (R) configuration, in good agreement with theoretical predictions. Moreover, preliminary studies demonstrated that these cyclooctynes were reactive in the presence of azides yielding substituted triazoles. MDPI 2021-03-15 /pmc/articles/PMC7999112/ /pubmed/33804118 http://dx.doi.org/10.3390/molecules26061629 Text en © 2021 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
Monzón, Diego M.
Betancort, Juan Manuel
Martín, Tomás
Ramírez, Miguel Ángel
Martín, Víctor S.
Díaz Díaz, David
Intramolecular Nicholas Reaction Enables the Stereoselective Synthesis of Strained Cyclooctynes
title Intramolecular Nicholas Reaction Enables the Stereoselective Synthesis of Strained Cyclooctynes
title_full Intramolecular Nicholas Reaction Enables the Stereoselective Synthesis of Strained Cyclooctynes
title_fullStr Intramolecular Nicholas Reaction Enables the Stereoselective Synthesis of Strained Cyclooctynes
title_full_unstemmed Intramolecular Nicholas Reaction Enables the Stereoselective Synthesis of Strained Cyclooctynes
title_short Intramolecular Nicholas Reaction Enables the Stereoselective Synthesis of Strained Cyclooctynes
title_sort intramolecular nicholas reaction enables the stereoselective synthesis of strained cyclooctynes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7999112/
https://www.ncbi.nlm.nih.gov/pubmed/33804118
http://dx.doi.org/10.3390/molecules26061629
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