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‘Sacrificial’ supramolecular assembly and pressure-induced polymerization: toward sequence-defined functionalized nanothreads

Limited supramolecular strategies have been utilized to synthesize sequence-defined polymers, despite the prominence of noncovalent interactions in materials design. Herein, we illustrate the utility of ‘sacrificial’ aryl-perfluoroaryl supramolecular synthons to synthesize sp(3)-hybridized nanothrea...

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Autores principales: Gerthoffer, Margaret C., Wu, Sikai, Chen, Bo, Wang, Tao, Huss, Steven, Oburn, Shalisa M., Crespi, Vincent H., Badding, John V., Elacqua, Elizabeth
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8162754/
https://www.ncbi.nlm.nih.gov/pubmed/34094384
http://dx.doi.org/10.1039/d0sc03904g
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author Gerthoffer, Margaret C.
Wu, Sikai
Chen, Bo
Wang, Tao
Huss, Steven
Oburn, Shalisa M.
Crespi, Vincent H.
Badding, John V.
Elacqua, Elizabeth
author_facet Gerthoffer, Margaret C.
Wu, Sikai
Chen, Bo
Wang, Tao
Huss, Steven
Oburn, Shalisa M.
Crespi, Vincent H.
Badding, John V.
Elacqua, Elizabeth
author_sort Gerthoffer, Margaret C.
collection PubMed
description Limited supramolecular strategies have been utilized to synthesize sequence-defined polymers, despite the prominence of noncovalent interactions in materials design. Herein, we illustrate the utility of ‘sacrificial’ aryl-perfluoroaryl supramolecular synthons to synthesize sp(3)-hybridized nanothreads from sp(2)-enriched reactants. Our strategy features A–B reactant pairs in the form of a phenol:pentafluorophenol co-crystal that is preorganized for an electronically-biased and sequence-defined polymerization. The polymerization, initiated at 12 GPa, affords an alternating copolymer featuring exogenous –OH functionalities. The external substitution is confirmed through IR spectroscopy. Importantly, the inclusion of the functional unit provides the first experimental glimpse at reaction mechanism: keto–enol tautomerization that can only occur during cycloaddition is observed through IR spectroscopy. Our approach realizes the first example of a functionalized nanothread and attains sequence definition through sacrificial supramolecular preorganization and presents a further approach for de novo design of complex nanothreads.
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spelling pubmed-81627542021-06-04 ‘Sacrificial’ supramolecular assembly and pressure-induced polymerization: toward sequence-defined functionalized nanothreads Gerthoffer, Margaret C. Wu, Sikai Chen, Bo Wang, Tao Huss, Steven Oburn, Shalisa M. Crespi, Vincent H. Badding, John V. Elacqua, Elizabeth Chem Sci Chemistry Limited supramolecular strategies have been utilized to synthesize sequence-defined polymers, despite the prominence of noncovalent interactions in materials design. Herein, we illustrate the utility of ‘sacrificial’ aryl-perfluoroaryl supramolecular synthons to synthesize sp(3)-hybridized nanothreads from sp(2)-enriched reactants. Our strategy features A–B reactant pairs in the form of a phenol:pentafluorophenol co-crystal that is preorganized for an electronically-biased and sequence-defined polymerization. The polymerization, initiated at 12 GPa, affords an alternating copolymer featuring exogenous –OH functionalities. The external substitution is confirmed through IR spectroscopy. Importantly, the inclusion of the functional unit provides the first experimental glimpse at reaction mechanism: keto–enol tautomerization that can only occur during cycloaddition is observed through IR spectroscopy. Our approach realizes the first example of a functionalized nanothread and attains sequence definition through sacrificial supramolecular preorganization and presents a further approach for de novo design of complex nanothreads. The Royal Society of Chemistry 2020-09-03 /pmc/articles/PMC8162754/ /pubmed/34094384 http://dx.doi.org/10.1039/d0sc03904g Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Gerthoffer, Margaret C.
Wu, Sikai
Chen, Bo
Wang, Tao
Huss, Steven
Oburn, Shalisa M.
Crespi, Vincent H.
Badding, John V.
Elacqua, Elizabeth
‘Sacrificial’ supramolecular assembly and pressure-induced polymerization: toward sequence-defined functionalized nanothreads
title ‘Sacrificial’ supramolecular assembly and pressure-induced polymerization: toward sequence-defined functionalized nanothreads
title_full ‘Sacrificial’ supramolecular assembly and pressure-induced polymerization: toward sequence-defined functionalized nanothreads
title_fullStr ‘Sacrificial’ supramolecular assembly and pressure-induced polymerization: toward sequence-defined functionalized nanothreads
title_full_unstemmed ‘Sacrificial’ supramolecular assembly and pressure-induced polymerization: toward sequence-defined functionalized nanothreads
title_short ‘Sacrificial’ supramolecular assembly and pressure-induced polymerization: toward sequence-defined functionalized nanothreads
title_sort ‘sacrificial’ supramolecular assembly and pressure-induced polymerization: toward sequence-defined functionalized nanothreads
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8162754/
https://www.ncbi.nlm.nih.gov/pubmed/34094384
http://dx.doi.org/10.1039/d0sc03904g
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