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◆ Materials Horizons2025-10-20· Self-healing hydrogels

Enhanced toughness in highly entangled hydrogels <i>via</i> non-covalent molecular hooks

Élise Ansart, Lucien Cousin, Mark W. Tibbitt, Stefan Mommer

原始摘要(英文原文)· Original abstract
) to the hydrogels that otherwise flow within minutes. Oscillatory and rotational rheology demonstrates that the incorporation of 1 mol% of PEGmeAc is sufficient to provide structural stability to the hydrogel, increase relaxation time and improve elastic response, and severely inhibits disentanglement under shear. We hypothesized that this effect was caused by a combination of hydrogen bonding and topological entanglements, making PEGmeAc act as "hooks" within the network. The mechanism was confirmed through a combination of dissolution assays and nuclear Overhauser enhancement spectroscopy (NOESY), which showed that hydrogen bonding and topological entanglements are at play. Consequently, the incorporation of small quantities of such monomers into hydrogels may open new pathways to enhance the mechanical properties of soft materials.
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Enhanced toughness in highly entangled hydrogels <i>via</i> non-covalent molecular hooks — 科研速览 Science Skim