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The Rainbow Arching over the Fluorescent Thienoviologen Mesophases

Thermofluorochromic materials exhibit tunable fluorescence emission on heating or cooling. They are highly desirable for applications ranging from temperature sensing to high-security anti-counterfeiting. Luminescent matrices based on liquid crystals are very promising, particularly those based on l...

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Autores principales: Corrente, Giuseppina Anna, Di Maio, Giuseppe, La Deda, Massimo, Ruiz de Ballesteros, Odda, Gabriele, Bartolo, Veltri, Lucia, Auriemma, Finizia, Beneduci, Amerigo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9736400/
https://www.ncbi.nlm.nih.gov/pubmed/36500907
http://dx.doi.org/10.3390/nano12234284
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author Corrente, Giuseppina Anna
Di Maio, Giuseppe
La Deda, Massimo
Ruiz de Ballesteros, Odda
Gabriele, Bartolo
Veltri, Lucia
Auriemma, Finizia
Beneduci, Amerigo
author_facet Corrente, Giuseppina Anna
Di Maio, Giuseppe
La Deda, Massimo
Ruiz de Ballesteros, Odda
Gabriele, Bartolo
Veltri, Lucia
Auriemma, Finizia
Beneduci, Amerigo
author_sort Corrente, Giuseppina Anna
collection PubMed
description Thermofluorochromic materials exhibit tunable fluorescence emission on heating or cooling. They are highly desirable for applications ranging from temperature sensing to high-security anti-counterfeiting. Luminescent matrices based on liquid crystals are very promising, particularly those based on liquid crystals with intrinsic fluorescence. However, only a few examples have been reported, suggesting ample margins for development in the field, due to the wide range of fluorophores and supramolecular organizations to be explored. Moreover, thermofluorochromic liquid crystals can be tailored with further functionalities to afford multi-stimuli responsive materials. For the first time, herein we report the thermofluorochromism of thienoviologen liquid crystals, already known to show bulk electrochromism and electrofluorochromism. In particular, we studied their photophysics in the 25 °C–220 °C range and as a function of the length of the N-linear alkyl chains, m (9 ≤ m ≤ 12 C atoms), and the type of anion, X (X = OTs(-), OTf(-), BF(4)(-), NTf(2)(-)). Interestingly, by changing the parameters m, X and T, their fluorescence can be finely tuned in the whole visible spectral range up to the NIR, by switching among different mesophases. Importantly, by fixing the structural parameters m and X, an interesting thermofluorochromism can be achieved for each thienoviologen in a homologous series, leading to a switch of the emitted light from red to green and from white to blue as a consequence of the temperature-induced variation in the supramolecular interactions in the self-assembled phases.
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spelling pubmed-97364002022-12-11 The Rainbow Arching over the Fluorescent Thienoviologen Mesophases Corrente, Giuseppina Anna Di Maio, Giuseppe La Deda, Massimo Ruiz de Ballesteros, Odda Gabriele, Bartolo Veltri, Lucia Auriemma, Finizia Beneduci, Amerigo Nanomaterials (Basel) Article Thermofluorochromic materials exhibit tunable fluorescence emission on heating or cooling. They are highly desirable for applications ranging from temperature sensing to high-security anti-counterfeiting. Luminescent matrices based on liquid crystals are very promising, particularly those based on liquid crystals with intrinsic fluorescence. However, only a few examples have been reported, suggesting ample margins for development in the field, due to the wide range of fluorophores and supramolecular organizations to be explored. Moreover, thermofluorochromic liquid crystals can be tailored with further functionalities to afford multi-stimuli responsive materials. For the first time, herein we report the thermofluorochromism of thienoviologen liquid crystals, already known to show bulk electrochromism and electrofluorochromism. In particular, we studied their photophysics in the 25 °C–220 °C range and as a function of the length of the N-linear alkyl chains, m (9 ≤ m ≤ 12 C atoms), and the type of anion, X (X = OTs(-), OTf(-), BF(4)(-), NTf(2)(-)). Interestingly, by changing the parameters m, X and T, their fluorescence can be finely tuned in the whole visible spectral range up to the NIR, by switching among different mesophases. Importantly, by fixing the structural parameters m and X, an interesting thermofluorochromism can be achieved for each thienoviologen in a homologous series, leading to a switch of the emitted light from red to green and from white to blue as a consequence of the temperature-induced variation in the supramolecular interactions in the self-assembled phases. MDPI 2022-12-01 /pmc/articles/PMC9736400/ /pubmed/36500907 http://dx.doi.org/10.3390/nano12234284 Text en © 2022 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
Corrente, Giuseppina Anna
Di Maio, Giuseppe
La Deda, Massimo
Ruiz de Ballesteros, Odda
Gabriele, Bartolo
Veltri, Lucia
Auriemma, Finizia
Beneduci, Amerigo
The Rainbow Arching over the Fluorescent Thienoviologen Mesophases
title The Rainbow Arching over the Fluorescent Thienoviologen Mesophases
title_full The Rainbow Arching over the Fluorescent Thienoviologen Mesophases
title_fullStr The Rainbow Arching over the Fluorescent Thienoviologen Mesophases
title_full_unstemmed The Rainbow Arching over the Fluorescent Thienoviologen Mesophases
title_short The Rainbow Arching over the Fluorescent Thienoviologen Mesophases
title_sort rainbow arching over the fluorescent thienoviologen mesophases
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9736400/
https://www.ncbi.nlm.nih.gov/pubmed/36500907
http://dx.doi.org/10.3390/nano12234284
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