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Reversible π-system switching of thiophene-fused thiahexaphyrins by solvent and oxidation/reduction

The concept of chemical topology has generated considerable interest among chemists and one of the state-of-the-art topics is Möbius topology in cyclic π-conjugated molecules. In this regard, expanded porphyrins have been extensively studied because of their facile topological interconversions and a...

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Autores principales: Higashino, Tomohiro, Kumagai, Atsushi, Sakaki, Shigeyoshi, Imahori, Hiroshi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Royal Society of Chemistry 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6179095/
https://www.ncbi.nlm.nih.gov/pubmed/30319753
http://dx.doi.org/10.1039/c8sc02448k
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author Higashino, Tomohiro
Kumagai, Atsushi
Sakaki, Shigeyoshi
Imahori, Hiroshi
author_facet Higashino, Tomohiro
Kumagai, Atsushi
Sakaki, Shigeyoshi
Imahori, Hiroshi
author_sort Higashino, Tomohiro
collection PubMed
description The concept of chemical topology has generated considerable interest among chemists and one of the state-of-the-art topics is Möbius topology in cyclic π-conjugated molecules. In this regard, expanded porphyrins have been extensively studied because of their facile topological interconversions and attractive optoelectronic properties. A typical example involves [28]hexaphyrins: they show topological conversion between planar Hückel and twisted Möbius topologies owing to their flexible structure. With this in mind, we designed a [28]hexaphyrin where one dimethine pyrrole unit was replaced with dithieno[3,4-b:3′,4′-d]thiophene (β-DTT), aiming at a reversible switching between macrocyclic and cross-conjugated π-systems by a change in molecular topologies. Considering that the β-DTT unit can offer both macrocyclic and cross-conjugated π-circuits, we envisioned that a combination of the topological interconversion of [28]hexaphyrin with the two π-circuits of the β-DTT unit would enable a reversible switching between macrocyclic and cross-conjugated π-circuits on Möbius and Hückel topologies, respectively, by a simple conformational change. Unexpectedly, the hexaphyrin revealed a unique, unprecedented π-system switching between a Möbius cross-conjugated π-system and a Hückel antiaromatic π-system, which was fully supported by both experimental and theoretical investigations. Meanwhile, the [28]hexaphyrin was also found to be redox interconvertible with the corresponding [26]hexaphyrin with a Hückel cross-conjugated π-system. These results demonstrate that the β-DTT unit is a new effective motif to realize π-system switching by changing molecular and π-system topologies. Importantly, external stimuli, i.e., solvent, as well as oxidation/reduction can be used to trigger the topological changes in expanded porphyrins with the help of the β-DTT unit.
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spelling pubmed-61790952018-10-12 Reversible π-system switching of thiophene-fused thiahexaphyrins by solvent and oxidation/reduction Higashino, Tomohiro Kumagai, Atsushi Sakaki, Shigeyoshi Imahori, Hiroshi Chem Sci Chemistry The concept of chemical topology has generated considerable interest among chemists and one of the state-of-the-art topics is Möbius topology in cyclic π-conjugated molecules. In this regard, expanded porphyrins have been extensively studied because of their facile topological interconversions and attractive optoelectronic properties. A typical example involves [28]hexaphyrins: they show topological conversion between planar Hückel and twisted Möbius topologies owing to their flexible structure. With this in mind, we designed a [28]hexaphyrin where one dimethine pyrrole unit was replaced with dithieno[3,4-b:3′,4′-d]thiophene (β-DTT), aiming at a reversible switching between macrocyclic and cross-conjugated π-systems by a change in molecular topologies. Considering that the β-DTT unit can offer both macrocyclic and cross-conjugated π-circuits, we envisioned that a combination of the topological interconversion of [28]hexaphyrin with the two π-circuits of the β-DTT unit would enable a reversible switching between macrocyclic and cross-conjugated π-circuits on Möbius and Hückel topologies, respectively, by a simple conformational change. Unexpectedly, the hexaphyrin revealed a unique, unprecedented π-system switching between a Möbius cross-conjugated π-system and a Hückel antiaromatic π-system, which was fully supported by both experimental and theoretical investigations. Meanwhile, the [28]hexaphyrin was also found to be redox interconvertible with the corresponding [26]hexaphyrin with a Hückel cross-conjugated π-system. These results demonstrate that the β-DTT unit is a new effective motif to realize π-system switching by changing molecular and π-system topologies. Importantly, external stimuli, i.e., solvent, as well as oxidation/reduction can be used to trigger the topological changes in expanded porphyrins with the help of the β-DTT unit. Royal Society of Chemistry 2018-08-14 /pmc/articles/PMC6179095/ /pubmed/30319753 http://dx.doi.org/10.1039/c8sc02448k Text en This journal is © The Royal Society of Chemistry 2018 http://creativecommons.org/licenses/by-nc/3.0/ This article is freely available. This article is licensed under a Creative Commons Attribution Non Commercial 3.0 Unported Licence (CC BY-NC 3.0)
spellingShingle Chemistry
Higashino, Tomohiro
Kumagai, Atsushi
Sakaki, Shigeyoshi
Imahori, Hiroshi
Reversible π-system switching of thiophene-fused thiahexaphyrins by solvent and oxidation/reduction
title Reversible π-system switching of thiophene-fused thiahexaphyrins by solvent and oxidation/reduction
title_full Reversible π-system switching of thiophene-fused thiahexaphyrins by solvent and oxidation/reduction
title_fullStr Reversible π-system switching of thiophene-fused thiahexaphyrins by solvent and oxidation/reduction
title_full_unstemmed Reversible π-system switching of thiophene-fused thiahexaphyrins by solvent and oxidation/reduction
title_short Reversible π-system switching of thiophene-fused thiahexaphyrins by solvent and oxidation/reduction
title_sort reversible π-system switching of thiophene-fused thiahexaphyrins by solvent and oxidation/reduction
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6179095/
https://www.ncbi.nlm.nih.gov/pubmed/30319753
http://dx.doi.org/10.1039/c8sc02448k
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