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Synthesis, Electrochemical and Photochemical Properties of Sulfanyl Porphyrazine with Ferrocenyl Substituents

Ferrocene is useful in modern organometallic chemistry due to its versatile applications in material sciences, catalysis, medicinal chemistry, and diagnostic applications. The ferrocene moiety can potentially serve many purposes in therapeutics and diagnostics. In the course of this study, (6-bromo-...

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Autores principales: Hassani, Mina, Leda, Amanda, Porolnik, Weronika, Falkowski, Michal, Rębiś, Tomasz, Piskorz, Jaroslaw, Popenda, Lukasz, Wicinski, Michal, Mlynarczyk, Dariusz T., Düzgüneş, Nejat, Marszall, Michal P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10343546/
https://www.ncbi.nlm.nih.gov/pubmed/37446877
http://dx.doi.org/10.3390/molecules28135215
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author Hassani, Mina
Leda, Amanda
Porolnik, Weronika
Falkowski, Michal
Rębiś, Tomasz
Piskorz, Jaroslaw
Popenda, Lukasz
Wicinski, Michal
Mlynarczyk, Dariusz T.
Düzgüneş, Nejat
Marszall, Michal P.
author_facet Hassani, Mina
Leda, Amanda
Porolnik, Weronika
Falkowski, Michal
Rębiś, Tomasz
Piskorz, Jaroslaw
Popenda, Lukasz
Wicinski, Michal
Mlynarczyk, Dariusz T.
Düzgüneş, Nejat
Marszall, Michal P.
author_sort Hassani, Mina
collection PubMed
description Ferrocene is useful in modern organometallic chemistry due to its versatile applications in material sciences, catalysis, medicinal chemistry, and diagnostic applications. The ferrocene moiety can potentially serve many purposes in therapeutics and diagnostics. In the course of this study, (6-bromo-1-oxohexyl)ferrocene was combined with dimercaptomaleonitrile sodium salt to yield a novel maleonitrile derivative. Subsequently, this compound was subjected to an autocyclotetramerization reaction using the Linstead conditions in order to obtain an octaferrocenyl-substituted magnesium(II) sulfanyl porphyrazine. Following that, both compounds—the maleonitrile derivative and the porphyrazine derivative—were subjected to physicochemical characterization using UV-Vis, ES-TOF, MALDI-TOF, and one-dimensional and two-dimensional NMR spectroscopy. Moreover, the sulfanyl porphyrazine was subjected to various photophysical studies, including optical absorption and emission measurements, as well as the evaluation of its photochemical properties. Values of singlet oxygen generation quantum yields were obtained in different organic solvents. The electrochemical properties of the synthesized compounds were studied using cyclic voltammetry. According to the electrochemical results, the presence of electron-withdrawing oxohexyl groups attached to ferrocene afforded significantly more positive oxidation potentials of the ferrocene-based redox process up to 0.34 V vs. Fc(+)/Fc.
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spelling pubmed-103435462023-07-14 Synthesis, Electrochemical and Photochemical Properties of Sulfanyl Porphyrazine with Ferrocenyl Substituents Hassani, Mina Leda, Amanda Porolnik, Weronika Falkowski, Michal Rębiś, Tomasz Piskorz, Jaroslaw Popenda, Lukasz Wicinski, Michal Mlynarczyk, Dariusz T. Düzgüneş, Nejat Marszall, Michal P. Molecules Article Ferrocene is useful in modern organometallic chemistry due to its versatile applications in material sciences, catalysis, medicinal chemistry, and diagnostic applications. The ferrocene moiety can potentially serve many purposes in therapeutics and diagnostics. In the course of this study, (6-bromo-1-oxohexyl)ferrocene was combined with dimercaptomaleonitrile sodium salt to yield a novel maleonitrile derivative. Subsequently, this compound was subjected to an autocyclotetramerization reaction using the Linstead conditions in order to obtain an octaferrocenyl-substituted magnesium(II) sulfanyl porphyrazine. Following that, both compounds—the maleonitrile derivative and the porphyrazine derivative—were subjected to physicochemical characterization using UV-Vis, ES-TOF, MALDI-TOF, and one-dimensional and two-dimensional NMR spectroscopy. Moreover, the sulfanyl porphyrazine was subjected to various photophysical studies, including optical absorption and emission measurements, as well as the evaluation of its photochemical properties. Values of singlet oxygen generation quantum yields were obtained in different organic solvents. The electrochemical properties of the synthesized compounds were studied using cyclic voltammetry. According to the electrochemical results, the presence of electron-withdrawing oxohexyl groups attached to ferrocene afforded significantly more positive oxidation potentials of the ferrocene-based redox process up to 0.34 V vs. Fc(+)/Fc. MDPI 2023-07-05 /pmc/articles/PMC10343546/ /pubmed/37446877 http://dx.doi.org/10.3390/molecules28135215 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Hassani, Mina
Leda, Amanda
Porolnik, Weronika
Falkowski, Michal
Rębiś, Tomasz
Piskorz, Jaroslaw
Popenda, Lukasz
Wicinski, Michal
Mlynarczyk, Dariusz T.
Düzgüneş, Nejat
Marszall, Michal P.
Synthesis, Electrochemical and Photochemical Properties of Sulfanyl Porphyrazine with Ferrocenyl Substituents
title Synthesis, Electrochemical and Photochemical Properties of Sulfanyl Porphyrazine with Ferrocenyl Substituents
title_full Synthesis, Electrochemical and Photochemical Properties of Sulfanyl Porphyrazine with Ferrocenyl Substituents
title_fullStr Synthesis, Electrochemical and Photochemical Properties of Sulfanyl Porphyrazine with Ferrocenyl Substituents
title_full_unstemmed Synthesis, Electrochemical and Photochemical Properties of Sulfanyl Porphyrazine with Ferrocenyl Substituents
title_short Synthesis, Electrochemical and Photochemical Properties of Sulfanyl Porphyrazine with Ferrocenyl Substituents
title_sort synthesis, electrochemical and photochemical properties of sulfanyl porphyrazine with ferrocenyl substituents
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10343546/
https://www.ncbi.nlm.nih.gov/pubmed/37446877
http://dx.doi.org/10.3390/molecules28135215
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