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Updated: Dec 31, 2025

Author Spotlight: Development of Homogeneous κ-Carrageenan Sub-Microgel Baths for High-Resolution 3D Bioprinting
Published on: May 3, 2024
Simultaneously improved strength and toughness in κ-carrageenan/polyacrylamide double network hydrogel via
Sijun Liu1, Hongbin Zhang1, Wei Yu1
1Advanced Rheology Institute, Department of Polymer Science and Engineering, Shanghai Jiao Tong University, Shanghai 200240, PR China.
Abstract:
Hybrid double network (DN) hydrogels have been fabricated by combining a physically cross-linked κ-carrageenan network, where various cations were used as cross-linker, with a covalently cross-linked polyacrylamide (PAAm) network. Compared to monovalent K+ and divalent Ca2+ cations, the presence of K+/Ca2+ mixture cations produced a well interconnected porous structure due to the synergistic effect, which simultaneously improved the strength and toughness of the resulting DN hydrogel. A model has been proposed considering the dissociation asynchronism of double-helical aggregates, which well interpret the fracture process and toughening mechanism of the K+/Ca2+-cross-linked κ-carrageenan/PAAm DN hydrogel. Moreover, the synergistic effect of K+/Ca2+ mixture cations also improved the recovery efficiency at room temperature and self-healing ability of DN hydrogel. The strategy of synergistic interaction presented here provides an alternative view for the fabrication of hybrid DN hydrogels with desirable mechanical performance and functional property.
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