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Reactivity of (Z)-4-Aryliden-5(4H)-thiazolones: [2 + 2]-Photocycloaddition, Ring-Opening Reactions, and Influence of the Lewis Acid BF(3)

[Image: see text] The irradiation of (Z)-2-phenyl-4-aryliden-5(4H)-thiazolones 2 with blue light (465 nm) in CH(2)Cl(2) solution promotes [2 + 2]-photocycloaddition of the exocyclic C=C bonds and the formation of the dispirocyclobutanes 3. This reaction takes place with high stereoselectivity, given...

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Autores principales: Sierra, Sonia, Dalmau, David, Higuera, Sheila, Cortés, Darío, Crespo, Olga, Jimenez, Ana I., Pop, Alexandra, Silvestru, Cristian, Urriolabeitia, Esteban P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2021
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9129068/
https://www.ncbi.nlm.nih.gov/pubmed/34479406
http://dx.doi.org/10.1021/acs.joc.1c01458
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author Sierra, Sonia
Dalmau, David
Higuera, Sheila
Cortés, Darío
Crespo, Olga
Jimenez, Ana I.
Pop, Alexandra
Silvestru, Cristian
Urriolabeitia, Esteban P.
author_facet Sierra, Sonia
Dalmau, David
Higuera, Sheila
Cortés, Darío
Crespo, Olga
Jimenez, Ana I.
Pop, Alexandra
Silvestru, Cristian
Urriolabeitia, Esteban P.
author_sort Sierra, Sonia
collection PubMed
description [Image: see text] The irradiation of (Z)-2-phenyl-4-aryliden-5(4H)-thiazolones 2 with blue light (465 nm) in CH(2)Cl(2) solution promotes [2 + 2]-photocycloaddition of the exocyclic C=C bonds and the formation of the dispirocyclobutanes 3. This reaction takes place with high stereoselectivity, given that the ε-isomer (1,3 head-to-tail syn coupling) is formed in more than 90% yield in most of the cases. However, irradiation of 5(4H)-thiazolones 2 with blue light (456 nm) in dry MeOH in the presence of BF(3)·OEt(2) leads to the monospirocyclobutanes 4 with full stereoselectivity, also affording the ε-isomer. A ring-opening reaction of only one of the thiazolone rings appears to have taken place in 4 upon methanolysis, leading to the corresponding ester and thioamide groups. The treatment of free 4-aryliden-5(4H)-thiazolones 2 with a base in alcohol (NaOR/ROH) also produces a ring-opening reaction of the heterocycle by methanolysis, although, under these reaction conditions, further intramolecular S-attack at the exocyclic C(H)=C bond and cyclization is observed, forming the dihydrothiazoles 5 or 6 as mixtures of cis (RS/SR)- and trans (RR/SS)-isomers with high diastereomeric excess. trans-(RR/SS)-Dihydrothiazoles 6 can be isolated as pure diastereoisomers by column chromatography. Surprisingly, dihydrothiazoles 5 can also be obtained by the treatment of 4-aryliden-5(4H)-thiazolones 2 with BF(3)·OEt(2) in methanol in the absence of a base.
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spelling pubmed-91290682022-05-25 Reactivity of (Z)-4-Aryliden-5(4H)-thiazolones: [2 + 2]-Photocycloaddition, Ring-Opening Reactions, and Influence of the Lewis Acid BF(3) Sierra, Sonia Dalmau, David Higuera, Sheila Cortés, Darío Crespo, Olga Jimenez, Ana I. Pop, Alexandra Silvestru, Cristian Urriolabeitia, Esteban P. J Org Chem [Image: see text] The irradiation of (Z)-2-phenyl-4-aryliden-5(4H)-thiazolones 2 with blue light (465 nm) in CH(2)Cl(2) solution promotes [2 + 2]-photocycloaddition of the exocyclic C=C bonds and the formation of the dispirocyclobutanes 3. This reaction takes place with high stereoselectivity, given that the ε-isomer (1,3 head-to-tail syn coupling) is formed in more than 90% yield in most of the cases. However, irradiation of 5(4H)-thiazolones 2 with blue light (456 nm) in dry MeOH in the presence of BF(3)·OEt(2) leads to the monospirocyclobutanes 4 with full stereoselectivity, also affording the ε-isomer. A ring-opening reaction of only one of the thiazolone rings appears to have taken place in 4 upon methanolysis, leading to the corresponding ester and thioamide groups. The treatment of free 4-aryliden-5(4H)-thiazolones 2 with a base in alcohol (NaOR/ROH) also produces a ring-opening reaction of the heterocycle by methanolysis, although, under these reaction conditions, further intramolecular S-attack at the exocyclic C(H)=C bond and cyclization is observed, forming the dihydrothiazoles 5 or 6 as mixtures of cis (RS/SR)- and trans (RR/SS)-isomers with high diastereomeric excess. trans-(RR/SS)-Dihydrothiazoles 6 can be isolated as pure diastereoisomers by column chromatography. Surprisingly, dihydrothiazoles 5 can also be obtained by the treatment of 4-aryliden-5(4H)-thiazolones 2 with BF(3)·OEt(2) in methanol in the absence of a base. American Chemical Society 2021-08-16 2021-09-03 /pmc/articles/PMC9129068/ /pubmed/34479406 http://dx.doi.org/10.1021/acs.joc.1c01458 Text en © 2021 American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Sierra, Sonia
Dalmau, David
Higuera, Sheila
Cortés, Darío
Crespo, Olga
Jimenez, Ana I.
Pop, Alexandra
Silvestru, Cristian
Urriolabeitia, Esteban P.
Reactivity of (Z)-4-Aryliden-5(4H)-thiazolones: [2 + 2]-Photocycloaddition, Ring-Opening Reactions, and Influence of the Lewis Acid BF(3)
title Reactivity of (Z)-4-Aryliden-5(4H)-thiazolones: [2 + 2]-Photocycloaddition, Ring-Opening Reactions, and Influence of the Lewis Acid BF(3)
title_full Reactivity of (Z)-4-Aryliden-5(4H)-thiazolones: [2 + 2]-Photocycloaddition, Ring-Opening Reactions, and Influence of the Lewis Acid BF(3)
title_fullStr Reactivity of (Z)-4-Aryliden-5(4H)-thiazolones: [2 + 2]-Photocycloaddition, Ring-Opening Reactions, and Influence of the Lewis Acid BF(3)
title_full_unstemmed Reactivity of (Z)-4-Aryliden-5(4H)-thiazolones: [2 + 2]-Photocycloaddition, Ring-Opening Reactions, and Influence of the Lewis Acid BF(3)
title_short Reactivity of (Z)-4-Aryliden-5(4H)-thiazolones: [2 + 2]-Photocycloaddition, Ring-Opening Reactions, and Influence of the Lewis Acid BF(3)
title_sort reactivity of (z)-4-aryliden-5(4h)-thiazolones: [2 + 2]-photocycloaddition, ring-opening reactions, and influence of the lewis acid bf(3)
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9129068/
https://www.ncbi.nlm.nih.gov/pubmed/34479406
http://dx.doi.org/10.1021/acs.joc.1c01458
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