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Controlling the fluorescence quantum yields of benzothiazole-difluoroborates by optimal substitution

Precise tuning of the fluorescence quantum yield, vital for countless applications of fluorophores, remains exceptionally challenging due to numerous factors affecting energy dissipation phenomena often leading to its counterintuitive behavior. In contrast to the absorption and emission wavelength w...

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Autores principales: Rybczyński, Patryk, Bousquet, Manon H. E., Kaczmarek-Kędziera, Anna, Jędrzejewska, Beata, Jacquemin, Denis, Ośmiałowski, Borys
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/PMC9682896/
https://www.ncbi.nlm.nih.gov/pubmed/36507166
http://dx.doi.org/10.1039/d2sc05044g
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author Rybczyński, Patryk
Bousquet, Manon H. E.
Kaczmarek-Kędziera, Anna
Jędrzejewska, Beata
Jacquemin, Denis
Ośmiałowski, Borys
author_facet Rybczyński, Patryk
Bousquet, Manon H. E.
Kaczmarek-Kędziera, Anna
Jędrzejewska, Beata
Jacquemin, Denis
Ośmiałowski, Borys
author_sort Rybczyński, Patryk
collection PubMed
description Precise tuning of the fluorescence quantum yield, vital for countless applications of fluorophores, remains exceptionally challenging due to numerous factors affecting energy dissipation phenomena often leading to its counterintuitive behavior. In contrast to the absorption and emission wavelength which can be precisely shifted to the desired range by simple structural changes, no general strategy exists for controllable modification of the fluorescence quantum yield. The rigidification of the molecular skeleton is known to usually enhance the emission and can be practically realized via the limiting molecular vibrations by aggregation. However, the subtle balance between the abundant possible radiative and non-radiative decay pathways makes the final picture exceptionally sophisticated. In the present study, a series of nine fluorophores obtained by peripheral substitution with two relatively mild electron donating and electron withdrawing groups are reported. The obtained fluorescence quantum yields range from dark to ultra-bright and the extreme values are obtained for the isomeric molecules. These severe changes in emission efficiency have been shown to arise from the complex relationship between the Franck–Condon excited state and conical intersection position. The experimental findings are rationalized by the advanced quantum chemical calculations delivering good correlation between the measured emission parameters and theoretical radiative and internal conversion rate constants. Therefore, the described substituent exchange provides a method to rigorously adjust the properties of molecular probes structurally similar to thioflavin T.
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spelling pubmed-96828962022-12-08 Controlling the fluorescence quantum yields of benzothiazole-difluoroborates by optimal substitution Rybczyński, Patryk Bousquet, Manon H. E. Kaczmarek-Kędziera, Anna Jędrzejewska, Beata Jacquemin, Denis Ośmiałowski, Borys Chem Sci Chemistry Precise tuning of the fluorescence quantum yield, vital for countless applications of fluorophores, remains exceptionally challenging due to numerous factors affecting energy dissipation phenomena often leading to its counterintuitive behavior. In contrast to the absorption and emission wavelength which can be precisely shifted to the desired range by simple structural changes, no general strategy exists for controllable modification of the fluorescence quantum yield. The rigidification of the molecular skeleton is known to usually enhance the emission and can be practically realized via the limiting molecular vibrations by aggregation. However, the subtle balance between the abundant possible radiative and non-radiative decay pathways makes the final picture exceptionally sophisticated. In the present study, a series of nine fluorophores obtained by peripheral substitution with two relatively mild electron donating and electron withdrawing groups are reported. The obtained fluorescence quantum yields range from dark to ultra-bright and the extreme values are obtained for the isomeric molecules. These severe changes in emission efficiency have been shown to arise from the complex relationship between the Franck–Condon excited state and conical intersection position. The experimental findings are rationalized by the advanced quantum chemical calculations delivering good correlation between the measured emission parameters and theoretical radiative and internal conversion rate constants. Therefore, the described substituent exchange provides a method to rigorously adjust the properties of molecular probes structurally similar to thioflavin T. The Royal Society of Chemistry 2022-10-24 /pmc/articles/PMC9682896/ /pubmed/36507166 http://dx.doi.org/10.1039/d2sc05044g Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Rybczyński, Patryk
Bousquet, Manon H. E.
Kaczmarek-Kędziera, Anna
Jędrzejewska, Beata
Jacquemin, Denis
Ośmiałowski, Borys
Controlling the fluorescence quantum yields of benzothiazole-difluoroborates by optimal substitution
title Controlling the fluorescence quantum yields of benzothiazole-difluoroborates by optimal substitution
title_full Controlling the fluorescence quantum yields of benzothiazole-difluoroborates by optimal substitution
title_fullStr Controlling the fluorescence quantum yields of benzothiazole-difluoroborates by optimal substitution
title_full_unstemmed Controlling the fluorescence quantum yields of benzothiazole-difluoroborates by optimal substitution
title_short Controlling the fluorescence quantum yields of benzothiazole-difluoroborates by optimal substitution
title_sort controlling the fluorescence quantum yields of benzothiazole-difluoroborates by optimal substitution
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9682896/
https://www.ncbi.nlm.nih.gov/pubmed/36507166
http://dx.doi.org/10.1039/d2sc05044g
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