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Updated: Sep 26, 2026

Construction of Modular Hydrogel Sheets for Micropatterned Macro-scaled 3D Cellular Architecture
Published on: January 11, 2016
A versatile and simple rectangular-topology strategy enables robust hydrogels
Zixuan Yang1, Yu Zhang1, Zhen Huang2,3
1State Key Laboratory of Materials-Oriented Chemical Engineering, College of Chemical Engineering, Nanjing Tech University, Nanjing, P. R. China.
Abstract:
High‑strength, tough hydrogels are urgently needed for biomedicine and soft robotics, yet single‑network architectures suffer from an inherent trade‑off between mechanical robustness and high water content. Herein, we propose a rectangular topological network (RN) composed of rectangular motifs in a single-network hydrogel via stoichiometric crosslinking of long and short polymer chains. This architecture achieves a high elastic modulus via dense intermolecular hydrogen bonds while maintaining large mesh sizes. Driven by a strain-induced hardening mechanism, the hydrogel achieves a simultaneous increase in strength and toughness. Successful fabrication using two crosslinkers demonstrates broad applicability. A representative PEG‑based RN hydrogel exhibits a Young's modulus of 21.97 MPa, a toughness of 31.04 MJ·m-3, and a tensile strength of 7.72 MPa. Thus, we show that this facile and versatile RN strategy offers a route for high‑energy dissipation and can be extended to other platforms.
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