Strong and Tough Poly(2‐Isopropenyl‐2‐Oxazoline) Hydrogels with Terpyridine as Dual Orthogonal Covalent and Non‐Covalent Crosslinker

K Kaiming Zhang M Mike van Dorsselaer (Supramolecular Chemistry Group, Centre of Macromolecular Chemistry (CMaC) Department of Organic and Macromolecular Chemistry Ghent University Krijgslaan 281‐S4 Ghent 9000 Belgium) T Tomáš Sedlačík (Department of Polymers Faculty of Chemistry and Technology University of Chemistry and Technology Technicka 5 Prague 160 00 Czech Republic) Z Zhe Wang S Somdeb Jana (Supramolecular Chemistry Group, Centre of Macromolecular Chemistry (CMaC) Department of Organic and Macromolecular Chemistry Ghent University Krijgslaan 281‐S4 Ghent 9000 Belgium) R Richard Hoogenboom (Supramolecular Chemistry Group, Centre of Macromolecular Chemistry, Department of Organic and Macromolecular Chemistry, Ghent University, Krijgslaan, 281-S4, 9000 Gent, Belgium)

Abstract

Abstract Developing simple and efficient methods to mechanically reinforce single‐network hydrogels for practical applications remains an important challenge. This study presents a strategy for preparing poly(2‐isopropenyl‐2‐oxazoline) (PiPOx) hydrogels using a dicarboxylic acid functionalized terpyridine (TPy) dual orthogonal crosslinker that acts as both a permanent covalent crosslinker and a dynamic non‐covalent crosslinker upon metal complexation. In this dual orthogonal crosslinking approach, PiPOx is first crosslinked with the dicarboxylic acid functionalized TPy in DMSO to form a stable covalent network, followed by solvent exchange to water, drying and the introduction of reversible coordination bonds through swelling in an aqueous zinc(II) ion solution. This orthogonal dual crosslinking strategy results in high compressive strength (26.6 MPa) and tough (5.28 MJ·m −3 ) single‐network hydrogels. This is attributed to the fact that the hydrogel combines thermodynamically stable primary permanent crosslinks and dynamic secondary reversible crosslinks in the same dual crosslinker, leading to polymer network contraction, thereby providing a novel and simple approach for the preparation of strong and tough dual orthogonal crosslinked single network hydrogels.

Article Details

Volume / Issue Vol. 64, Issue 42
Published October 13, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (6)

K

Kaiming Zhang

M

Mike van Dorsselaer

Supramolecular Chemistry Group, Centre of Macromolecular Chemistry (CMaC) Department of Organic and Macromolecular Chemistry Ghent University Krijgslaan 281‐S4 Ghent 9000 Belgium

T

Tomáš Sedlačík

Department of Polymers Faculty of Chemistry and Technology University of Chemistry and Technology Technicka 5 Prague 160 00 Czech Republic

Z

Zhe Wang

S

Somdeb Jana

Supramolecular Chemistry Group, Centre of Macromolecular Chemistry (CMaC) Department of Organic and Macromolecular Chemistry Ghent University Krijgslaan 281‐S4 Ghent 9000 Belgium

R

Richard Hoogenboom

Supramolecular Chemistry Group, Centre of Macromolecular Chemistry, Department of Organic and Macromolecular Chemistry, Ghent University, Krijgslaan, 281-S4, 9000 Gent, Belgium