Dynamic Chalcogen Squares for Material and Topological Control over Macromolecules

Author:

Bui Aaron H.1,Fernando Pulle Anne D.1,Micallef Aaron S.12,Lessard Jacob J.3,Tuten Bryan T.1ORCID

Affiliation:

1. School of Chemistry and Physics, Centre for Materials Science Queensland University of Technology 2 George Street Brisbane, QLD 4000 Australia

2. Central Analytical Research Facility Queensland University of Technology 2 George Street Brisbane, QLD 4000 Australia

3. Beckman Institute for Advanced Science and Technology Department of Chemistry University of Illinois Urbana, Champaign Urbana Illinois 61801 United States of America

Abstract

AbstractHerein we introduce chalcogen squares via selenadiazole motifs as a new class of dynamic supramolecular bonding interactions for the modification and control of soft matter materials. We showcase selenadiazole motifs in supramolecular networks of varying primary chain length prepared through polymerization using tandem step‐growth/Passerini multicomponent reactions (MCRs). Compared to controls lacking the selenadiazole motif, these networks display increased glass transition temperatures and moduli due to the chalcogen bonding linkages formed between chains. These elastomeric networks were shown to autonomously heal at room temperature, retaining up to 83 % of the ultimate tensile strength. Lastly, we use post‐polymerization modification via the Biginelli MCR to add selenadiazole motifs to narrowly dispersed polymers for controlled topology in solution. Chalcogen squares via selenadiazoles introduce an exciting exchange mechanism to the realm of dynamic materials.

Funder

Australian Research Council

Publisher

Wiley

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