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How To Make Nitroaromatic Compounds Glow: Next‐Generation Large X‐Shaped, Centrosymmetric Diketopyrrolopyrroles

Red‐emissive π‐expanded diketopyrrolopyrroles (DPPs) with fluorescence reaching λ=750 nm can be easily synthesized by a three‐step strategy involving the preparation of diketopyrrolopyrrole followed by N‐arylation and subsequent intramolecular palladium‐catalyzed direct arylation. Comprehensive spec...

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Autores principales: Skonieczny, Kamil, Papadopoulos, Ilias, Thiel, Dominik, Gutkowski, Krzysztof, Haines, Philipp, McCosker, Patrick M., Laurent, Adèle D., Keller, Paul A., Clark, Timothy, Jacquemin, Denis, Guldi, Dirk M., Gryko, Daniel T.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7689858/
https://www.ncbi.nlm.nih.gov/pubmed/32492240
http://dx.doi.org/10.1002/anie.202005244
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author Skonieczny, Kamil
Papadopoulos, Ilias
Thiel, Dominik
Gutkowski, Krzysztof
Haines, Philipp
McCosker, Patrick M.
Laurent, Adèle D.
Keller, Paul A.
Clark, Timothy
Jacquemin, Denis
Guldi, Dirk M.
Gryko, Daniel T.
author_facet Skonieczny, Kamil
Papadopoulos, Ilias
Thiel, Dominik
Gutkowski, Krzysztof
Haines, Philipp
McCosker, Patrick M.
Laurent, Adèle D.
Keller, Paul A.
Clark, Timothy
Jacquemin, Denis
Guldi, Dirk M.
Gryko, Daniel T.
author_sort Skonieczny, Kamil
collection PubMed
description Red‐emissive π‐expanded diketopyrrolopyrroles (DPPs) with fluorescence reaching λ=750 nm can be easily synthesized by a three‐step strategy involving the preparation of diketopyrrolopyrrole followed by N‐arylation and subsequent intramolecular palladium‐catalyzed direct arylation. Comprehensive spectroscopic assays combined with first‐principles calculations corroborated that both N‐arylated and fused DPPs reach a locally excited (S(1)) state after excitation, followed by internal conversion to states with solvent and structural relaxation, before eventually undergoing intersystem crossing. Only the structurally relaxed state is fluorescent, with lifetimes in the range of several nanoseconds and tens of picoseconds in nonpolar and polar solvents, respectively. The lifetimes correlate with the fluorescence quantum yields, which range from 6 % to 88 % in nonpolar solvents and from 0.4 % and 3.2 % in polar solvents. A very inefficient (T(1)) population is responsible for fluorescence quantum yields as high as 88 % for the fully fused DPP in polar solvents.
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spelling pubmed-76898582020-12-08 How To Make Nitroaromatic Compounds Glow: Next‐Generation Large X‐Shaped, Centrosymmetric Diketopyrrolopyrroles Skonieczny, Kamil Papadopoulos, Ilias Thiel, Dominik Gutkowski, Krzysztof Haines, Philipp McCosker, Patrick M. Laurent, Adèle D. Keller, Paul A. Clark, Timothy Jacquemin, Denis Guldi, Dirk M. Gryko, Daniel T. Angew Chem Int Ed Engl Research Articles Red‐emissive π‐expanded diketopyrrolopyrroles (DPPs) with fluorescence reaching λ=750 nm can be easily synthesized by a three‐step strategy involving the preparation of diketopyrrolopyrrole followed by N‐arylation and subsequent intramolecular palladium‐catalyzed direct arylation. Comprehensive spectroscopic assays combined with first‐principles calculations corroborated that both N‐arylated and fused DPPs reach a locally excited (S(1)) state after excitation, followed by internal conversion to states with solvent and structural relaxation, before eventually undergoing intersystem crossing. Only the structurally relaxed state is fluorescent, with lifetimes in the range of several nanoseconds and tens of picoseconds in nonpolar and polar solvents, respectively. The lifetimes correlate with the fluorescence quantum yields, which range from 6 % to 88 % in nonpolar solvents and from 0.4 % and 3.2 % in polar solvents. A very inefficient (T(1)) population is responsible for fluorescence quantum yields as high as 88 % for the fully fused DPP in polar solvents. John Wiley and Sons Inc. 2020-07-10 2020-09-07 /pmc/articles/PMC7689858/ /pubmed/32492240 http://dx.doi.org/10.1002/anie.202005244 Text en © 2020 The Authors. Published by Wiley-VCH Verlag GmbH & Co. KGaA This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Skonieczny, Kamil
Papadopoulos, Ilias
Thiel, Dominik
Gutkowski, Krzysztof
Haines, Philipp
McCosker, Patrick M.
Laurent, Adèle D.
Keller, Paul A.
Clark, Timothy
Jacquemin, Denis
Guldi, Dirk M.
Gryko, Daniel T.
How To Make Nitroaromatic Compounds Glow: Next‐Generation Large X‐Shaped, Centrosymmetric Diketopyrrolopyrroles
title How To Make Nitroaromatic Compounds Glow: Next‐Generation Large X‐Shaped, Centrosymmetric Diketopyrrolopyrroles
title_full How To Make Nitroaromatic Compounds Glow: Next‐Generation Large X‐Shaped, Centrosymmetric Diketopyrrolopyrroles
title_fullStr How To Make Nitroaromatic Compounds Glow: Next‐Generation Large X‐Shaped, Centrosymmetric Diketopyrrolopyrroles
title_full_unstemmed How To Make Nitroaromatic Compounds Glow: Next‐Generation Large X‐Shaped, Centrosymmetric Diketopyrrolopyrroles
title_short How To Make Nitroaromatic Compounds Glow: Next‐Generation Large X‐Shaped, Centrosymmetric Diketopyrrolopyrroles
title_sort how to make nitroaromatic compounds glow: next‐generation large x‐shaped, centrosymmetric diketopyrrolopyrroles
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7689858/
https://www.ncbi.nlm.nih.gov/pubmed/32492240
http://dx.doi.org/10.1002/anie.202005244
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