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Dimerizing cascades of enallenamides reveal the visible-light-promoted activation of cumulated C–C double bonds

The visible-light-promoted activation of conjugated C–C double bonds is well developed, while that of cumulated systems is underexplored. We present the feasibility of this challenging approach. The localization of a triplet on an allenamide arm can be favored over that on a conjugated alkene. Allen...

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Autores principales: Serafino, Andrea, Chiminelli, Maurizio, Balestri, Davide, Marchiò, Luciano, Bigi, Franca, Maggi, Rai-mondo, Malacria, Max, Maestri, Giovanni
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8890112/
https://www.ncbi.nlm.nih.gov/pubmed/35340858
http://dx.doi.org/10.1039/d1sc06719b
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author Serafino, Andrea
Chiminelli, Maurizio
Balestri, Davide
Marchiò, Luciano
Bigi, Franca
Maggi, Rai-mondo
Malacria, Max
Maestri, Giovanni
author_facet Serafino, Andrea
Chiminelli, Maurizio
Balestri, Davide
Marchiò, Luciano
Bigi, Franca
Maggi, Rai-mondo
Malacria, Max
Maestri, Giovanni
author_sort Serafino, Andrea
collection PubMed
description The visible-light-promoted activation of conjugated C–C double bonds is well developed, while that of cumulated systems is underexplored. We present the feasibility of this challenging approach. The localization of a triplet on an allenamide arm can be favored over that on a conjugated alkene. Allenamides with an arylacryloyl arm dimerize at room temperature in the presence of visible light and an iridium(iii) photocatalyst. Two orthogonal polycyclizations took place and their outcome is entirely dictated by the substitution of the alkene partner. Both cascades afford complex molecular architectures with high selectivity. Products form through the ordered rearrangement of twelve π electrons, providing a [3.2.0] bicyclic unit tethered to a fused tricycle, whose formation included an aryl C–H functionalization step, using disubstituted alkenes. The outcome was reverted with trisubstituted ones, which gave rise to taxane-like bridged tricycles that had two six-membered lactams flanking a cyclooctane ring, which was established through the creation of four alternate C–C bonds.
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spelling pubmed-88901122022-03-24 Dimerizing cascades of enallenamides reveal the visible-light-promoted activation of cumulated C–C double bonds Serafino, Andrea Chiminelli, Maurizio Balestri, Davide Marchiò, Luciano Bigi, Franca Maggi, Rai-mondo Malacria, Max Maestri, Giovanni Chem Sci Chemistry The visible-light-promoted activation of conjugated C–C double bonds is well developed, while that of cumulated systems is underexplored. We present the feasibility of this challenging approach. The localization of a triplet on an allenamide arm can be favored over that on a conjugated alkene. Allenamides with an arylacryloyl arm dimerize at room temperature in the presence of visible light and an iridium(iii) photocatalyst. Two orthogonal polycyclizations took place and their outcome is entirely dictated by the substitution of the alkene partner. Both cascades afford complex molecular architectures with high selectivity. Products form through the ordered rearrangement of twelve π electrons, providing a [3.2.0] bicyclic unit tethered to a fused tricycle, whose formation included an aryl C–H functionalization step, using disubstituted alkenes. The outcome was reverted with trisubstituted ones, which gave rise to taxane-like bridged tricycles that had two six-membered lactams flanking a cyclooctane ring, which was established through the creation of four alternate C–C bonds. The Royal Society of Chemistry 2022-01-26 /pmc/articles/PMC8890112/ /pubmed/35340858 http://dx.doi.org/10.1039/d1sc06719b Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Serafino, Andrea
Chiminelli, Maurizio
Balestri, Davide
Marchiò, Luciano
Bigi, Franca
Maggi, Rai-mondo
Malacria, Max
Maestri, Giovanni
Dimerizing cascades of enallenamides reveal the visible-light-promoted activation of cumulated C–C double bonds
title Dimerizing cascades of enallenamides reveal the visible-light-promoted activation of cumulated C–C double bonds
title_full Dimerizing cascades of enallenamides reveal the visible-light-promoted activation of cumulated C–C double bonds
title_fullStr Dimerizing cascades of enallenamides reveal the visible-light-promoted activation of cumulated C–C double bonds
title_full_unstemmed Dimerizing cascades of enallenamides reveal the visible-light-promoted activation of cumulated C–C double bonds
title_short Dimerizing cascades of enallenamides reveal the visible-light-promoted activation of cumulated C–C double bonds
title_sort dimerizing cascades of enallenamides reveal the visible-light-promoted activation of cumulated c–c double bonds
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8890112/
https://www.ncbi.nlm.nih.gov/pubmed/35340858
http://dx.doi.org/10.1039/d1sc06719b
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