Carbon nitride photocatalyzes regioselective aminium radical addition to the carbonyl bond and yields N-fused pyrroles

Photochemistry offers new means to perform organic chemistry, although these transformations typically require additives. Here, the authors study reactions between tetrahydroisoquinolines and chalcones under visible light using carbon nitrides for construction of novel fluorescent heterocycles.

Bibliographic Details
Main Authors: Bogdan Kurpil, Katharina Otte, Artem Mishchenko, Paolo Lamagni, Wojciech Lipiński, Nina Lock, Markus Antonietti, Aleksandr Savateev
Format: Article
Language:English
Published: Nature Portfolio 2019-02-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-019-08652-w
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author Bogdan Kurpil
Katharina Otte
Artem Mishchenko
Paolo Lamagni
Wojciech Lipiński
Nina Lock
Markus Antonietti
Aleksandr Savateev
author_facet Bogdan Kurpil
Katharina Otte
Artem Mishchenko
Paolo Lamagni
Wojciech Lipiński
Nina Lock
Markus Antonietti
Aleksandr Savateev
author_sort Bogdan Kurpil
collection DOAJ
description Photochemistry offers new means to perform organic chemistry, although these transformations typically require additives. Here, the authors study reactions between tetrahydroisoquinolines and chalcones under visible light using carbon nitrides for construction of novel fluorescent heterocycles.
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spelling doaj.art-cedb680893944fbca078bf34a3bec7aa2022-12-21T20:31:28ZengNature PortfolioNature Communications2041-17232019-02-0110111010.1038/s41467-019-08652-wCarbon nitride photocatalyzes regioselective aminium radical addition to the carbonyl bond and yields N-fused pyrrolesBogdan Kurpil0Katharina Otte1Artem Mishchenko2Paolo Lamagni3Wojciech Lipiński4Nina Lock5Markus Antonietti6Aleksandr Savateev7Department of Colloid Chemistry, Max-Planck Institute of Colloids and InterfacesDepartment of Colloid Chemistry, Max-Planck Institute of Colloids and InterfacesV.I. Vernadsky Institute of General and Inorganic Chemistry, NAS of UkraineCarbon Dioxide Activation Center, Interdisciplinary Nanoscience Center (iNANO), and Department of Chemistry, Aarhus UniversityDepartment of Colloid Chemistry, Max-Planck Institute of Colloids and InterfacesCarbon Dioxide Activation Center, Interdisciplinary Nanoscience Center (iNANO), and Department of Chemistry, Aarhus UniversityDepartment of Colloid Chemistry, Max-Planck Institute of Colloids and InterfacesDepartment of Colloid Chemistry, Max-Planck Institute of Colloids and InterfacesPhotochemistry offers new means to perform organic chemistry, although these transformations typically require additives. Here, the authors study reactions between tetrahydroisoquinolines and chalcones under visible light using carbon nitrides for construction of novel fluorescent heterocycles.https://doi.org/10.1038/s41467-019-08652-w
spellingShingle Bogdan Kurpil
Katharina Otte
Artem Mishchenko
Paolo Lamagni
Wojciech Lipiński
Nina Lock
Markus Antonietti
Aleksandr Savateev
Carbon nitride photocatalyzes regioselective aminium radical addition to the carbonyl bond and yields N-fused pyrroles
Nature Communications
title Carbon nitride photocatalyzes regioselective aminium radical addition to the carbonyl bond and yields N-fused pyrroles
title_full Carbon nitride photocatalyzes regioselective aminium radical addition to the carbonyl bond and yields N-fused pyrroles
title_fullStr Carbon nitride photocatalyzes regioselective aminium radical addition to the carbonyl bond and yields N-fused pyrroles
title_full_unstemmed Carbon nitride photocatalyzes regioselective aminium radical addition to the carbonyl bond and yields N-fused pyrroles
title_short Carbon nitride photocatalyzes regioselective aminium radical addition to the carbonyl bond and yields N-fused pyrroles
title_sort carbon nitride photocatalyzes regioselective aminium radical addition to the carbonyl bond and yields n fused pyrroles
url https://doi.org/10.1038/s41467-019-08652-w
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