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Temperature-dependent modulation by biaryl-based monomers of the chain length and morphology of biphenyl-based supramolecular polymers

Supramolecular copolymerizations offer attractive options to introduce structural and functional diversity in supramolecular polymer materials. Yet, general principles and structure–property relationships for rational comonomer design remain lacking. Here, we report on the supramolecular (co)aggrega...

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Autores principales: Iseki, Tomokazu, Mabesoone, Mathijs F. J., Koenis, Mark A. J., Lamers, Brigitte A. G., Weyandt, Elisabeth, de Windt, Lafayette N. J., Buma, Wybren Jan, Palmans, Anja R. A., Meijer, E. W.
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/PMC8513997/
https://www.ncbi.nlm.nih.gov/pubmed/34745531
http://dx.doi.org/10.1039/d1sc03974a
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author Iseki, Tomokazu
Mabesoone, Mathijs F. J.
Koenis, Mark A. J.
Lamers, Brigitte A. G.
Weyandt, Elisabeth
de Windt, Lafayette N. J.
Buma, Wybren Jan
Palmans, Anja R. A.
Meijer, E. W.
author_facet Iseki, Tomokazu
Mabesoone, Mathijs F. J.
Koenis, Mark A. J.
Lamers, Brigitte A. G.
Weyandt, Elisabeth
de Windt, Lafayette N. J.
Buma, Wybren Jan
Palmans, Anja R. A.
Meijer, E. W.
author_sort Iseki, Tomokazu
collection PubMed
description Supramolecular copolymerizations offer attractive options to introduce structural and functional diversity in supramolecular polymer materials. Yet, general principles and structure–property relationships for rational comonomer design remain lacking. Here, we report on the supramolecular (co)aggregation of a phenylpyridine and bipyridine derivative of a recently reported biphenyl tetracarboxamide-based monomer. We show that both arylpyridines are poor monomers for supramolecular homopolymerizations. However, the two arylpyridines efficiently influence supramolecular polymers of a biphenyl-based polymer. The phenylpyridine derivatives primarily sequestrate biphenyl monomers, while the bipyridine intercalates into the polymers at high temperatures. Thereby, these two poorly homopolymerizing monomers allow for a fine control over the length of the biphenyl-based supramolecular polymers. As such, our results highlight the potential to control the structure and morphology of supramolecular polymers by tailoring the electronic properties of additives.
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spelling pubmed-85139972021-11-04 Temperature-dependent modulation by biaryl-based monomers of the chain length and morphology of biphenyl-based supramolecular polymers Iseki, Tomokazu Mabesoone, Mathijs F. J. Koenis, Mark A. J. Lamers, Brigitte A. G. Weyandt, Elisabeth de Windt, Lafayette N. J. Buma, Wybren Jan Palmans, Anja R. A. Meijer, E. W. Chem Sci Chemistry Supramolecular copolymerizations offer attractive options to introduce structural and functional diversity in supramolecular polymer materials. Yet, general principles and structure–property relationships for rational comonomer design remain lacking. Here, we report on the supramolecular (co)aggregation of a phenylpyridine and bipyridine derivative of a recently reported biphenyl tetracarboxamide-based monomer. We show that both arylpyridines are poor monomers for supramolecular homopolymerizations. However, the two arylpyridines efficiently influence supramolecular polymers of a biphenyl-based polymer. The phenylpyridine derivatives primarily sequestrate biphenyl monomers, while the bipyridine intercalates into the polymers at high temperatures. Thereby, these two poorly homopolymerizing monomers allow for a fine control over the length of the biphenyl-based supramolecular polymers. As such, our results highlight the potential to control the structure and morphology of supramolecular polymers by tailoring the electronic properties of additives. The Royal Society of Chemistry 2021-09-06 /pmc/articles/PMC8513997/ /pubmed/34745531 http://dx.doi.org/10.1039/d1sc03974a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Iseki, Tomokazu
Mabesoone, Mathijs F. J.
Koenis, Mark A. J.
Lamers, Brigitte A. G.
Weyandt, Elisabeth
de Windt, Lafayette N. J.
Buma, Wybren Jan
Palmans, Anja R. A.
Meijer, E. W.
Temperature-dependent modulation by biaryl-based monomers of the chain length and morphology of biphenyl-based supramolecular polymers
title Temperature-dependent modulation by biaryl-based monomers of the chain length and morphology of biphenyl-based supramolecular polymers
title_full Temperature-dependent modulation by biaryl-based monomers of the chain length and morphology of biphenyl-based supramolecular polymers
title_fullStr Temperature-dependent modulation by biaryl-based monomers of the chain length and morphology of biphenyl-based supramolecular polymers
title_full_unstemmed Temperature-dependent modulation by biaryl-based monomers of the chain length and morphology of biphenyl-based supramolecular polymers
title_short Temperature-dependent modulation by biaryl-based monomers of the chain length and morphology of biphenyl-based supramolecular polymers
title_sort temperature-dependent modulation by biaryl-based monomers of the chain length and morphology of biphenyl-based supramolecular polymers
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8513997/
https://www.ncbi.nlm.nih.gov/pubmed/34745531
http://dx.doi.org/10.1039/d1sc03974a
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