首页 /研究 /Strong, tough, rapid-recovery, and fatigue-resistant hydrogels made of picot peptide fibres
OTHER

Strong, tough, rapid-recovery, and fatigue-resistant hydrogels made of picot peptide fibres

Bin Xue, Zoobia Bashir, Yachong Guo, Wenting Yu, Wenxu Sun, Yiran Li, Yiyang Zhang, Meng Qin, Wei Wang, Yi Cao

发表年份
2023
引用次数
149
访问权限
开放获取

摘要

Hydrogels are promising soft materials as tissue engineering scaffolds, stretchable sensors, and soft robotics. Yet, it remains challenging to develop synthetic hydrogels with mechanical stability and durability similar to those of the connective tissues. Many of the necessary mechanical properties, such as high strength, high toughness, rapid recovery, and high fatigue resistance, generally cannot be established together using conventional polymer networks. Here we present a type of hydrogels comprising hierarchical structures of picot fibres made of copper-bound self-assembling peptide strands with zipped flexible hidden length. The redundant hidden lengths allow the fibres to be extended to dissipate mechanical load without reducing network connectivity, making the hydrogels robust against damage. The hydrogels possess high strength, good toughness, high fatigue threshold, and rapid recovery, comparable to or even outperforming those of articular cartilage. Our study highlights the unique possibility of tailoring hydrogel network structures at the molecular level to improve their mechanical performance.

关键词

Self-healing hydrogelsToughnessMaterials scienceMechanical strengthSoft roboticsComposite materialPolymerBiomedical engineeringComputer scienceRobot

相关论文

查看 OTHER 分类全部论文