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Kinetically-driven reactivity of sulfinylamines enables direct conversion of carboxylic acids to sulfinamides

Sulfinamides are some of the most centrally important four-valent sulfur compounds that serve as critical entry points to an array of emergent medicinal functional groups, molecular tools for bioconjugation, and synthetic intermediates including sulfoximines, sulfonimidamides, and sulfonimidoyl hali...

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Autores principales: Dang, Hang T., Porey, Arka, Nand, Sachchida, Trevino, Ramon, Manning-Lorino, Patrick, Hughes, William B., Fremin, Seth O., Thompson, William T., Dhakal, Shree Krishna, Arman, Hadi D., Larionov, Oleg V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10685282/
https://www.ncbi.nlm.nih.gov/pubmed/38033883
http://dx.doi.org/10.1039/d3sc04727j
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author Dang, Hang T.
Porey, Arka
Nand, Sachchida
Trevino, Ramon
Manning-Lorino, Patrick
Hughes, William B.
Fremin, Seth O.
Thompson, William T.
Dhakal, Shree Krishna
Arman, Hadi D.
Larionov, Oleg V.
author_facet Dang, Hang T.
Porey, Arka
Nand, Sachchida
Trevino, Ramon
Manning-Lorino, Patrick
Hughes, William B.
Fremin, Seth O.
Thompson, William T.
Dhakal, Shree Krishna
Arman, Hadi D.
Larionov, Oleg V.
author_sort Dang, Hang T.
collection PubMed
description Sulfinamides are some of the most centrally important four-valent sulfur compounds that serve as critical entry points to an array of emergent medicinal functional groups, molecular tools for bioconjugation, and synthetic intermediates including sulfoximines, sulfonimidamides, and sulfonimidoyl halides, as well as a wide range of other S(iv) and S(vi) functionalities. Yet, the accessible chemical space of sulfinamides remains limited, and the approaches to sulfinamides are largely confined to two-electron nucleophilic substitution reactions. We report herein a direct radical-mediated decarboxylative sulfinamidation that for the first time enables access to sulfinamides from the broad and structurally diverse chemical space of carboxylic acids. Our studies show that the formation of sulfinamides prevails despite the inherent thermodynamic preference for the radical addition to the nitrogen atom, while a machine learning-derived model facilitates prediction of the reaction efficiency based on computationally generated descriptors of the underlying radical reactivity.
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spelling pubmed-106852822023-11-30 Kinetically-driven reactivity of sulfinylamines enables direct conversion of carboxylic acids to sulfinamides Dang, Hang T. Porey, Arka Nand, Sachchida Trevino, Ramon Manning-Lorino, Patrick Hughes, William B. Fremin, Seth O. Thompson, William T. Dhakal, Shree Krishna Arman, Hadi D. Larionov, Oleg V. Chem Sci Chemistry Sulfinamides are some of the most centrally important four-valent sulfur compounds that serve as critical entry points to an array of emergent medicinal functional groups, molecular tools for bioconjugation, and synthetic intermediates including sulfoximines, sulfonimidamides, and sulfonimidoyl halides, as well as a wide range of other S(iv) and S(vi) functionalities. Yet, the accessible chemical space of sulfinamides remains limited, and the approaches to sulfinamides are largely confined to two-electron nucleophilic substitution reactions. We report herein a direct radical-mediated decarboxylative sulfinamidation that for the first time enables access to sulfinamides from the broad and structurally diverse chemical space of carboxylic acids. Our studies show that the formation of sulfinamides prevails despite the inherent thermodynamic preference for the radical addition to the nitrogen atom, while a machine learning-derived model facilitates prediction of the reaction efficiency based on computationally generated descriptors of the underlying radical reactivity. The Royal Society of Chemistry 2023-10-09 /pmc/articles/PMC10685282/ /pubmed/38033883 http://dx.doi.org/10.1039/d3sc04727j Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Dang, Hang T.
Porey, Arka
Nand, Sachchida
Trevino, Ramon
Manning-Lorino, Patrick
Hughes, William B.
Fremin, Seth O.
Thompson, William T.
Dhakal, Shree Krishna
Arman, Hadi D.
Larionov, Oleg V.
Kinetically-driven reactivity of sulfinylamines enables direct conversion of carboxylic acids to sulfinamides
title Kinetically-driven reactivity of sulfinylamines enables direct conversion of carboxylic acids to sulfinamides
title_full Kinetically-driven reactivity of sulfinylamines enables direct conversion of carboxylic acids to sulfinamides
title_fullStr Kinetically-driven reactivity of sulfinylamines enables direct conversion of carboxylic acids to sulfinamides
title_full_unstemmed Kinetically-driven reactivity of sulfinylamines enables direct conversion of carboxylic acids to sulfinamides
title_short Kinetically-driven reactivity of sulfinylamines enables direct conversion of carboxylic acids to sulfinamides
title_sort kinetically-driven reactivity of sulfinylamines enables direct conversion of carboxylic acids to sulfinamides
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10685282/
https://www.ncbi.nlm.nih.gov/pubmed/38033883
http://dx.doi.org/10.1039/d3sc04727j
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