DOE OSTI · 3022476
Programmable hydrogels by combining persistent and transient dynamic bonds
Abstract
Out-of-equilibrium chemistry is currently being applied to polymer systems to mimic the autonomous behavior of biological materials. In this study, hydrogels with self-healing properties were developed that combine persistent crosslinks from dynamic metal-ligand coordination with transient crosslinks from dynamic anhydride bonds. Polymers containing terpyridine ligands and carboxylic acid groups were synthesized and crosslinked with divalent metal ions (Fe 2+ , Ni 2+ , Co 2+ , Zn 2+ , Cu 2+ ). The coordination bonds from terpyridine–metal coordination impart persistent stability, while transient anhydrides formed on treatment with 1-ethyl-3-(3-dimethylaminopropyl)carbodiimide hydrochloride (EDC) temporarily increase crosslink density. Distinct behaviors are observed depending on the choice of metal, with Ni 2+ forming robust, stable networks; Zn 2+ creating moderately dynamic gels; and Cu 2+ yielding highly dynamic, soft materials. Treatment with EDC increased storage moduli significantly, with transient effects lasting up to 280 min depending on the metal ion. Self-healing experiments demonstrated independent contributions from metal coordination and transient anhydrides, enabling recovery of stress and strain under varying conditions. Additionally, complex and reversible 2D stiffness patterns were generated by spatially controlled EDC treatment of Zn 2+ and Cu 2+ hydrogel films, demonstrating programmability and reusability.
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Rajawasam, Chamoni W. H. [Miami University, Oxford, OH (United States)], Saha, Nirob K. [Miami University, Oxford, OH (United States)], Tran, Corvo [Miami University, Oxford, OH (United States)], Costantino, Sophia M. [Miami University, Oxford, OH (United States)], Weeks, Michael [Miami University, Oxford, OH (United States)], McCoy, Kathleen [Miami University, Oxford, OH (United States)], Sparks, Jessica L., Hartley, C. Scott [Miami University, Oxford, OH (United States)], Konkolewicz, Dominik [Miami University, Oxford, OH (United States)]. 2026-03-03. Programmable hydrogels by combining persistent and transient dynamic bonds. https://doi.org/10.1016/j.cej.2026.174743
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