Vinylogous Urea—Urethane Vitrimers: Accelerating and Inhibiting Network Dynamics through Hydrogen Bonding

Author:

Engelen Stéphanie1ORCID,Dolinski Neil D.2ORCID,Chen Chuqiao2ORCID,Ghimire Elina2,Lindberg Charlie A.2ORCID,Crolais Alex E.3,Nitta Natsumi2,Winne Johan M.1ORCID,Rowan Stuart J.23ORCID,Du Prez Filip E.1ORCID

Affiliation:

1. Department of Organic and Macromolecular Chemistry Ghent University Krijgslaan 281-S4 9000 Ghent Belgium

2. Prtizker School of Molecular Engineering at University of Chicago IL 60637 Chicago USA

3. Department of Chemistry University of Chicago Chicago IL 60637 USA

Abstract

AbstractVinylogous urethane (VUO) based polymer networks are widely used as catalyst‐free vitrimers that show rapid covalent bond exchange at elevated temperatures. In solution, vinylogous ureas (VUN) undergo much faster bond exchange than VUO and are highly dynamic at room temperature. However, this difference in reactivity is not observed in their respective dynamic polymer networks, as VUO and VUN vitrimers prepared herein with very similar macromolecular architectures show comparable stress relaxation and creep behavior. However, by using mixtures of VUO and VUN linkages within the same network, the dynamic reactions can be accelerated by an order of magnitude. The results can be rationalized by the effect of intermolecular hydrogen bonding, which is absent in VUO vitrimers, but is very pronounced for vinylogous urea moieties. At low concentrations of VUN, these hydrogen bonds act as catalysts for covalent bond exchange, while at high concentration, they provide a pervasive vinylogous urea ‐ urethane (VU) network of strong non‐covalent interactions, giving rise to phase separation and inhibiting polymer chain dynamics. This offers a straightforward design principle for dynamic polymer materials, showing at the same time the possible additive and synergistic effects of supramolecular and dynamic covalent polymer networks.

Funder

H2020 European Research Council

National Science Foundation

Fonds Wetenschappelijk Onderzoek

Bijzonder Onderzoeksfonds UGent

Publisher

Wiley

Subject

General Medicine

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