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Unveiling a new aspect of oxocarbons: open-shell character of 4- and 5-membered oxocarbon derivatives showing near-infrared absorption

Oxocarbon derivatives consisting of 4- and 5-membered rings, referred to as croconaine and squaraine dyes and regarded as closed-shell molecules, are found to have an intermediate open-shell character from the experimental results of (1)H-NMR, ESR spectroscopy, SQUID magnetometric analysis, and X-ra...

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Autores principales: Maeda, Takeshi, Oka, Taishi, Sakamaki, Daisuke, Fujiwara, Hideki, Suzuki, Naoya, Yagi, Shigeyuki, Konishi, Tatsuki, Kamada, Kenji
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9944335/
https://www.ncbi.nlm.nih.gov/pubmed/36845939
http://dx.doi.org/10.1039/d2sc06612b
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author Maeda, Takeshi
Oka, Taishi
Sakamaki, Daisuke
Fujiwara, Hideki
Suzuki, Naoya
Yagi, Shigeyuki
Konishi, Tatsuki
Kamada, Kenji
author_facet Maeda, Takeshi
Oka, Taishi
Sakamaki, Daisuke
Fujiwara, Hideki
Suzuki, Naoya
Yagi, Shigeyuki
Konishi, Tatsuki
Kamada, Kenji
author_sort Maeda, Takeshi
collection PubMed
description Oxocarbon derivatives consisting of 4- and 5-membered rings, referred to as croconaine and squaraine dyes and regarded as closed-shell molecules, are found to have an intermediate open-shell character from the experimental results of (1)H-NMR, ESR spectroscopy, SQUID magnetometric analysis, and X-ray crystallography. We employed two chalcogenopyrylium moieties with O and S chalcogen atoms as substitutions on oxocarbons. The singlet–triplet energy gaps (ΔE(S–T)) associated with the degree of diradical nature are smaller for croconaines than for squaraines and smaller for thiopyrylium than for pyrylium groups. The diradical nature impacts the electronic transition energy that decreased with a decreasing degree of diradical contribution. They exhibit substantial two-photon absorption in the region over 1000 nm. The diradical character y of the dye was determined experimentally from the observed one- and two-photon absorption peaks and the triplet energy level. The present finding provides new insight into diradicaloids with the contribution of non-Kekulé oxocarbon and also showcases the correlation between the electronic transition energy and their diradical character.
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spelling pubmed-99443352023-02-23 Unveiling a new aspect of oxocarbons: open-shell character of 4- and 5-membered oxocarbon derivatives showing near-infrared absorption Maeda, Takeshi Oka, Taishi Sakamaki, Daisuke Fujiwara, Hideki Suzuki, Naoya Yagi, Shigeyuki Konishi, Tatsuki Kamada, Kenji Chem Sci Chemistry Oxocarbon derivatives consisting of 4- and 5-membered rings, referred to as croconaine and squaraine dyes and regarded as closed-shell molecules, are found to have an intermediate open-shell character from the experimental results of (1)H-NMR, ESR spectroscopy, SQUID magnetometric analysis, and X-ray crystallography. We employed two chalcogenopyrylium moieties with O and S chalcogen atoms as substitutions on oxocarbons. The singlet–triplet energy gaps (ΔE(S–T)) associated with the degree of diradical nature are smaller for croconaines than for squaraines and smaller for thiopyrylium than for pyrylium groups. The diradical nature impacts the electronic transition energy that decreased with a decreasing degree of diradical contribution. They exhibit substantial two-photon absorption in the region over 1000 nm. The diradical character y of the dye was determined experimentally from the observed one- and two-photon absorption peaks and the triplet energy level. The present finding provides new insight into diradicaloids with the contribution of non-Kekulé oxocarbon and also showcases the correlation between the electronic transition energy and their diradical character. The Royal Society of Chemistry 2023-01-16 /pmc/articles/PMC9944335/ /pubmed/36845939 http://dx.doi.org/10.1039/d2sc06612b Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Maeda, Takeshi
Oka, Taishi
Sakamaki, Daisuke
Fujiwara, Hideki
Suzuki, Naoya
Yagi, Shigeyuki
Konishi, Tatsuki
Kamada, Kenji
Unveiling a new aspect of oxocarbons: open-shell character of 4- and 5-membered oxocarbon derivatives showing near-infrared absorption
title Unveiling a new aspect of oxocarbons: open-shell character of 4- and 5-membered oxocarbon derivatives showing near-infrared absorption
title_full Unveiling a new aspect of oxocarbons: open-shell character of 4- and 5-membered oxocarbon derivatives showing near-infrared absorption
title_fullStr Unveiling a new aspect of oxocarbons: open-shell character of 4- and 5-membered oxocarbon derivatives showing near-infrared absorption
title_full_unstemmed Unveiling a new aspect of oxocarbons: open-shell character of 4- and 5-membered oxocarbon derivatives showing near-infrared absorption
title_short Unveiling a new aspect of oxocarbons: open-shell character of 4- and 5-membered oxocarbon derivatives showing near-infrared absorption
title_sort unveiling a new aspect of oxocarbons: open-shell character of 4- and 5-membered oxocarbon derivatives showing near-infrared absorption
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9944335/
https://www.ncbi.nlm.nih.gov/pubmed/36845939
http://dx.doi.org/10.1039/d2sc06612b
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