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Solvent-Exchange-Assisted Wet Annealing: A New Strategy for Superstrong, Tough, Stretchable, and Anti-Fatigue Hydrogels.
Wu, Yongchuan; Zhang, Ya; Wu, Haidi; Wen, Jing; Zhang, Shu; Xing, Wenqian; Zhang, Hechuan; Xue, Huaiguo; Gao, Jiefeng; Mai, Yiuwing.
Afiliação
  • Wu Y; School of Chemistry and Chemical Engineering, Yangzhou University, No. 180, Road Siwangting, Yangzhou, Jiangsu, 225002, P. R. China.
  • Zhang Y; School of Chemistry and Chemical Engineering, Yangzhou University, No. 180, Road Siwangting, Yangzhou, Jiangsu, 225002, P. R. China.
  • Wu H; School of Chemistry and Chemical Engineering, Yangzhou University, No. 180, Road Siwangting, Yangzhou, Jiangsu, 225002, P. R. China.
  • Wen J; School of Chemistry and Chemical Engineering, Yangzhou University, No. 180, Road Siwangting, Yangzhou, Jiangsu, 225002, P. R. China.
  • Zhang S; School of Chemistry and Chemical Engineering, Yangzhou University, No. 180, Road Siwangting, Yangzhou, Jiangsu, 225002, P. R. China.
  • Xing W; School of Chemistry and Chemical Engineering, Yangzhou University, No. 180, Road Siwangting, Yangzhou, Jiangsu, 225002, P. R. China.
  • Zhang H; School of Chemistry and Chemical Engineering, Yangzhou University, No. 180, Road Siwangting, Yangzhou, Jiangsu, 225002, P. R. China.
  • Xue H; School of Chemistry and Chemical Engineering, Yangzhou University, No. 180, Road Siwangting, Yangzhou, Jiangsu, 225002, P. R. China.
  • Gao J; School of Chemistry and Chemical Engineering, Yangzhou University, No. 180, Road Siwangting, Yangzhou, Jiangsu, 225002, P. R. China.
  • Mai Y; Centre for Advanced Materials Technology (CAMT), School of Aerospace, Mechanical and Mechatronic Engineering J07, The University of Sydney, Sydney, NSW, 2006, Australia.
Adv Mater ; 35(15): e2210624, 2023 Apr.
Article em En | MEDLINE | ID: mdl-36648109
ABSTRACT
Hydrogels are widely used in tissue engineering, soft robots, wearable electronics, etc. However, it remains a great challenge to develop hydrogels possessing simultaneously high strength, large stretchability, great fracture energy, and good fatigue threshold to suit different applications. Herein, a novel solvent-exchange-assisted wet-annealing strategy is proposed to prepare high performance poly(vinyl alcohol) hydrogels by extensively tuning the macromolecular chain movement and optimizing the polymer network. The reinforcing and toughening mechanisms are found to be "macromolecule crystallization and entanglement". These hydrogels have large tensile strengths up to 11.19 ± 0.27 MPa and extremely high fracture strains of 1879 ± 10%. In addition, the fracture energy and fatigue threshold can reach as high as 25.39 ± 6.64 kJ m-2 and ≈1233 J m-2 , respectively. These superb mechanical properties compare favorably to those of other tough hydrogels, organogels, and even natural tendons and synthetic rubbers. This work provides a new and effective method to fabricate superstrong, tough, stretchable, and anti-fatigue hydrogels with potential applications in artificial tendons and ligaments.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2023 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2023 Tipo de documento: Article