自愈水凝胶
软机器人
材料科学
3D打印
3d打印
挤压
纳米技术
自愈
数字光处理
生物医学工程
计算机科学
复合材料
人工智能
机器人
工程类
病理
高分子化学
替代医学
投影机
医学
作者
Matteo Caprioli,Ignazio Roppolo,Annalisa Chiappone,Liraz Larush,Candido Fabrizio Pirri,Shlomo Magdassi
标识
DOI:10.1038/s41467-021-22802-z
摘要
Abstract Self-healing hydrogels may mimic the behavior of living tissues, which can autonomously repair minor damages, and therefore have a high potential for application in biomedicine. So far, such hydrogels have been processed only via extrusion-based additive manufacturing technology, limited in freedom of design and resolution. Herein, we present 3D-printed hydrogel with self-healing ability, fabricated using only commercially available materials and a commercial Digital Light Processing printer. These hydrogels are based on a semi-interpenetrated polymeric network, enabling self-repair of the printed objects. The autonomous restoration occurs rapidly, at room temperature, and without any external trigger. After rejoining, the samples can withstand deformation and recovered 72% of their initial strength after 12 hours. The proposed approach enables 3D printing of self-healing hydrogels objects with complex architecture, paving the way for future applications in diverse fields, ranging from soft robotics to energy storage.
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