DOI: 10.1021/acsapm.6c02577 ISSN: 2637-6105

Salt Crystallization-Inducing Strong and Tough Hydrogels

Cunliang Hu, Jianhui Yu, Huixue Wang, Wenkai Liu, Chengbo Zhou, Qian Tao, Yao Zhang, Nan Lou, Yuming Cui, Yanfeng Meng

Abstract

Research on salt-mediated hydrogel structure and property modulation often neglects the potential effects of salt crystallization. Here, we leverage the crystallization of sodium phytate during poly(vinyl alcohol) (PVA) hydrogel dehydration to induce the formation of dendritic crystals composed of PVA nanofibers. These crystals address network defects and act as robust “crosslinking blocks,” thereby strengthening the hydrogel matrix. Concurrently, enlarged secondary ordered domains bolster the amorphous phase, serving as buffers to optimize load transfer and distribution. This strategy yields a reinforced PVA hydrogel with high mechanical properties: a fracture strength of 29.12 ± 1.53 MPa, an elastic modulus of 58.91 ± 2.55 MPa, a toughness of 164.88 ± 1.96 MJ m–3, and a fracture energy of 97.45 ± 5.49 kJ m–2. Given the ubiquity of salt crystallization, this approach offers significant practical benefits and broad application potential for controlling hydrogel structure and properties.

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