Cargando…

Thiosquaramide-Based Supramolecular Polymers: Aromaticity Gain in a Switched Mode of Self-Assembly

[Image: see text] Despite a growing understanding of factors that drive monomer self-assembly to form supramolecular polymers, the effects of aromaticity gain have been largely ignored. Herein, we document the aromaticity gain in two different self-assembly modes of squaramide-based bolaamphiphiles....

Descripción completa

Detalles Bibliográficos
Autores principales: Saez Talens, Victorio, Davis, Joyal, Wu, Chia-Hua, Wen, Zhili, Lauria, Francesca, Gupta, Karthick Babu Sai Sankar, Rudge, Raisa, Boraghi, Mahsa, Hagemeijer, Alexander, Trinh, Thuat T., Englebienne, Pablo, Voets, Ilja K., Wu, Judy I., Kieltyka, Roxanne E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2020
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7705886/
https://www.ncbi.nlm.nih.gov/pubmed/33191746
http://dx.doi.org/10.1021/jacs.0c02081
_version_ 1783617041354194944
author Saez Talens, Victorio
Davis, Joyal
Wu, Chia-Hua
Wen, Zhili
Lauria, Francesca
Gupta, Karthick Babu Sai Sankar
Rudge, Raisa
Boraghi, Mahsa
Hagemeijer, Alexander
Trinh, Thuat T.
Englebienne, Pablo
Voets, Ilja K.
Wu, Judy I.
Kieltyka, Roxanne E.
author_facet Saez Talens, Victorio
Davis, Joyal
Wu, Chia-Hua
Wen, Zhili
Lauria, Francesca
Gupta, Karthick Babu Sai Sankar
Rudge, Raisa
Boraghi, Mahsa
Hagemeijer, Alexander
Trinh, Thuat T.
Englebienne, Pablo
Voets, Ilja K.
Wu, Judy I.
Kieltyka, Roxanne E.
author_sort Saez Talens, Victorio
collection PubMed
description [Image: see text] Despite a growing understanding of factors that drive monomer self-assembly to form supramolecular polymers, the effects of aromaticity gain have been largely ignored. Herein, we document the aromaticity gain in two different self-assembly modes of squaramide-based bolaamphiphiles. Importantly, O → S substitution in squaramide synthons resulted in supramolecular polymers with increased fiber flexibility and lower degrees of polymerization. Computations and spectroscopic experiments suggest that the oxo- and thiosquaramide bolaamphiphiles self-assemble into “head-to-tail” versus “stacked” arrangements, respectively. Computed energetic and magnetic criteria of aromaticity reveal that both modes of self-assembly increase the aromatic character of the squaramide synthons, giving rise to stronger intermolecular interactions in the resultant supramolecular polymer structures. These examples suggest that both hydrogen-bonding and stacking interactions can result in increased aromaticity upon self-assembly, highlighting its relevance in monomer design.
format Online
Article
Text
id pubmed-7705886
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher American Chemical Society
record_format MEDLINE/PubMed
spelling pubmed-77058862020-12-02 Thiosquaramide-Based Supramolecular Polymers: Aromaticity Gain in a Switched Mode of Self-Assembly Saez Talens, Victorio Davis, Joyal Wu, Chia-Hua Wen, Zhili Lauria, Francesca Gupta, Karthick Babu Sai Sankar Rudge, Raisa Boraghi, Mahsa Hagemeijer, Alexander Trinh, Thuat T. Englebienne, Pablo Voets, Ilja K. Wu, Judy I. Kieltyka, Roxanne E. J Am Chem Soc [Image: see text] Despite a growing understanding of factors that drive monomer self-assembly to form supramolecular polymers, the effects of aromaticity gain have been largely ignored. Herein, we document the aromaticity gain in two different self-assembly modes of squaramide-based bolaamphiphiles. Importantly, O → S substitution in squaramide synthons resulted in supramolecular polymers with increased fiber flexibility and lower degrees of polymerization. Computations and spectroscopic experiments suggest that the oxo- and thiosquaramide bolaamphiphiles self-assemble into “head-to-tail” versus “stacked” arrangements, respectively. Computed energetic and magnetic criteria of aromaticity reveal that both modes of self-assembly increase the aromatic character of the squaramide synthons, giving rise to stronger intermolecular interactions in the resultant supramolecular polymer structures. These examples suggest that both hydrogen-bonding and stacking interactions can result in increased aromaticity upon self-assembly, highlighting its relevance in monomer design. American Chemical Society 2020-11-16 2020-11-25 /pmc/articles/PMC7705886/ /pubmed/33191746 http://dx.doi.org/10.1021/jacs.0c02081 Text en © 2020 American Chemical Society This is an open access article published under a Creative Commons Non-Commercial No Derivative Works (CC-BY-NC-ND) Attribution License (http://pubs.acs.org/page/policy/authorchoice_ccbyncnd_termsofuse.html) , which permits copying and redistribution of the article, and creation of adaptations, all for non-commercial purposes.
spellingShingle Saez Talens, Victorio
Davis, Joyal
Wu, Chia-Hua
Wen, Zhili
Lauria, Francesca
Gupta, Karthick Babu Sai Sankar
Rudge, Raisa
Boraghi, Mahsa
Hagemeijer, Alexander
Trinh, Thuat T.
Englebienne, Pablo
Voets, Ilja K.
Wu, Judy I.
Kieltyka, Roxanne E.
Thiosquaramide-Based Supramolecular Polymers: Aromaticity Gain in a Switched Mode of Self-Assembly
title Thiosquaramide-Based Supramolecular Polymers: Aromaticity Gain in a Switched Mode of Self-Assembly
title_full Thiosquaramide-Based Supramolecular Polymers: Aromaticity Gain in a Switched Mode of Self-Assembly
title_fullStr Thiosquaramide-Based Supramolecular Polymers: Aromaticity Gain in a Switched Mode of Self-Assembly
title_full_unstemmed Thiosquaramide-Based Supramolecular Polymers: Aromaticity Gain in a Switched Mode of Self-Assembly
title_short Thiosquaramide-Based Supramolecular Polymers: Aromaticity Gain in a Switched Mode of Self-Assembly
title_sort thiosquaramide-based supramolecular polymers: aromaticity gain in a switched mode of self-assembly
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7705886/
https://www.ncbi.nlm.nih.gov/pubmed/33191746
http://dx.doi.org/10.1021/jacs.0c02081
work_keys_str_mv AT saeztalensvictorio thiosquaramidebasedsupramolecularpolymersaromaticitygaininaswitchedmodeofselfassembly
AT davisjoyal thiosquaramidebasedsupramolecularpolymersaromaticitygaininaswitchedmodeofselfassembly
AT wuchiahua thiosquaramidebasedsupramolecularpolymersaromaticitygaininaswitchedmodeofselfassembly
AT wenzhili thiosquaramidebasedsupramolecularpolymersaromaticitygaininaswitchedmodeofselfassembly
AT lauriafrancesca thiosquaramidebasedsupramolecularpolymersaromaticitygaininaswitchedmodeofselfassembly
AT guptakarthickbabusaisankar thiosquaramidebasedsupramolecularpolymersaromaticitygaininaswitchedmodeofselfassembly
AT rudgeraisa thiosquaramidebasedsupramolecularpolymersaromaticitygaininaswitchedmodeofselfassembly
AT boraghimahsa thiosquaramidebasedsupramolecularpolymersaromaticitygaininaswitchedmodeofselfassembly
AT hagemeijeralexander thiosquaramidebasedsupramolecularpolymersaromaticitygaininaswitchedmodeofselfassembly
AT trinhthuatt thiosquaramidebasedsupramolecularpolymersaromaticitygaininaswitchedmodeofselfassembly
AT englebiennepablo thiosquaramidebasedsupramolecularpolymersaromaticitygaininaswitchedmodeofselfassembly
AT voetsiljak thiosquaramidebasedsupramolecularpolymersaromaticitygaininaswitchedmodeofselfassembly
AT wujudyi thiosquaramidebasedsupramolecularpolymersaromaticitygaininaswitchedmodeofselfassembly
AT kieltykaroxannee thiosquaramidebasedsupramolecularpolymersaromaticitygaininaswitchedmodeofselfassembly