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Fluorescent supramolecular polymers of barbiturate dyes with thiophene-cored twisted π-systems

Because supramolecular polymerization of emissive π-conjugated molecules depends strongly on π–π stacking interaction, the formation of well-defined one-dimensional nanostructures often results in a decrease or only a small increase of emission efficiency. This is also true for our barbiturate-based...

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Autores principales: Kawaura, Maika, Aizawa, Takumi, Takahashi, Sho, Miyasaka, Hiroshi, Sotome, Hikaru, Yagai, Shiki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8809409/
https://www.ncbi.nlm.nih.gov/pubmed/35222911
http://dx.doi.org/10.1039/d1sc06246h
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author Kawaura, Maika
Aizawa, Takumi
Takahashi, Sho
Miyasaka, Hiroshi
Sotome, Hikaru
Yagai, Shiki
author_facet Kawaura, Maika
Aizawa, Takumi
Takahashi, Sho
Miyasaka, Hiroshi
Sotome, Hikaru
Yagai, Shiki
author_sort Kawaura, Maika
collection PubMed
description Because supramolecular polymerization of emissive π-conjugated molecules depends strongly on π–π stacking interaction, the formation of well-defined one-dimensional nanostructures often results in a decrease or only a small increase of emission efficiency. This is also true for our barbiturate-based supramolecular polymers wherein hydrogen-bonded rosettes of barbiturates stack quasi-one-dimensionally through π–π stacking interaction. Herein we report supramolecular polymerization-induced emission of two regioisomeric 2,3-diphenylthiophene derivatives functionalized with barbituric acid and tri(dodecyloxy)benzyl wedge units. In CHCl(3), both compounds are molecularly dissolved and accordingly poorly emissive due to a torsion-induced non-radiative decay. In methylcyclohexane-rich conditions, these barbiturates self-assemble to form crystalline nanofibers and exhibit strongly enhanced emission through supramolecular polymerization driven by hydrogen-bonding. Our structural analysis suggests that the barbiturates form a tape-like hydrogen-bonding motif, which is rationalized by considering that the twisted geometries of 2,3-diphenylthiophene cores prevend the competing rosettes from stacking into columnar supramolecular polymers. We also found that a small difference in the molecular polarity originating from the substitutional position of the thiophene core influences interchain association of the supramolecular polymers, affording different luminescent soft materials, gel and nanosheet.
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spelling pubmed-88094092022-02-24 Fluorescent supramolecular polymers of barbiturate dyes with thiophene-cored twisted π-systems Kawaura, Maika Aizawa, Takumi Takahashi, Sho Miyasaka, Hiroshi Sotome, Hikaru Yagai, Shiki Chem Sci Chemistry Because supramolecular polymerization of emissive π-conjugated molecules depends strongly on π–π stacking interaction, the formation of well-defined one-dimensional nanostructures often results in a decrease or only a small increase of emission efficiency. This is also true for our barbiturate-based supramolecular polymers wherein hydrogen-bonded rosettes of barbiturates stack quasi-one-dimensionally through π–π stacking interaction. Herein we report supramolecular polymerization-induced emission of two regioisomeric 2,3-diphenylthiophene derivatives functionalized with barbituric acid and tri(dodecyloxy)benzyl wedge units. In CHCl(3), both compounds are molecularly dissolved and accordingly poorly emissive due to a torsion-induced non-radiative decay. In methylcyclohexane-rich conditions, these barbiturates self-assemble to form crystalline nanofibers and exhibit strongly enhanced emission through supramolecular polymerization driven by hydrogen-bonding. Our structural analysis suggests that the barbiturates form a tape-like hydrogen-bonding motif, which is rationalized by considering that the twisted geometries of 2,3-diphenylthiophene cores prevend the competing rosettes from stacking into columnar supramolecular polymers. We also found that a small difference in the molecular polarity originating from the substitutional position of the thiophene core influences interchain association of the supramolecular polymers, affording different luminescent soft materials, gel and nanosheet. The Royal Society of Chemistry 2021-12-09 /pmc/articles/PMC8809409/ /pubmed/35222911 http://dx.doi.org/10.1039/d1sc06246h Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Kawaura, Maika
Aizawa, Takumi
Takahashi, Sho
Miyasaka, Hiroshi
Sotome, Hikaru
Yagai, Shiki
Fluorescent supramolecular polymers of barbiturate dyes with thiophene-cored twisted π-systems
title Fluorescent supramolecular polymers of barbiturate dyes with thiophene-cored twisted π-systems
title_full Fluorescent supramolecular polymers of barbiturate dyes with thiophene-cored twisted π-systems
title_fullStr Fluorescent supramolecular polymers of barbiturate dyes with thiophene-cored twisted π-systems
title_full_unstemmed Fluorescent supramolecular polymers of barbiturate dyes with thiophene-cored twisted π-systems
title_short Fluorescent supramolecular polymers of barbiturate dyes with thiophene-cored twisted π-systems
title_sort fluorescent supramolecular polymers of barbiturate dyes with thiophene-cored twisted π-systems
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8809409/
https://www.ncbi.nlm.nih.gov/pubmed/35222911
http://dx.doi.org/10.1039/d1sc06246h
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