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用于设计可修复抗冲击耐磨水凝胶的盐焊接策略。

Salt-welding strategy for the design of repairable impact-resistant and wear-resistant hydrogels.

作者信息

Jia Jiangpeng, Lu Shan, Sun Shurui, Jin Yijie, Qin Liguo, Zhao Chuanzhuang

机构信息

School of Materials Science & Chemical Engineering, Ministry of Education Key Laboratory of Impact and Safety Engineering, Ningbo University, Ningbo 315211, China.

Key Laboratory of Education Ministry for Modern Design and Rotor-Bearing System, Institute of Design Science and Basic Components, School of Mechanical Engineering, Xi'an Jiaotong University, Xi'an 710049, China.

出版信息

Sci Adv. 2025 Jan 24;11(4):eadr9834. doi: 10.1126/sciadv.adr9834.

Abstract

Self-healing hydrogels can autonomously repair damage, enhancing their performance stability and broadening their applications as soft devices. Although the incorporation of dynamic interactions enhances self-healing capabilities, it simultaneously weakens the hydrogels' strength. External stimuli such as heating, while accelerating the healing process, may also lead to dehydration. Developing a stable repair strategy that combines rapid healing and high mechanical strength is challenging. Here, we introduce "salt-welding" for high-strength hydrogels with rapid room temperature self-healing. This is achieved through dynamic borate ester bonds in a salt-responsive poly(methacrylamide) hydrogel. The process involves "salt-fusion" to convert fractures into a viscous liquid for swift healing, followed by "salt-concretion" to toughen the hydrogel. The hydrogels achieve a posthealing strength of 23 megapascals in 95 minutes at room temperature, with near 100% healing efficiency. Leveraging their tunable mechanical strength and rapid healing rate, the hydrogel can be tailored for applications as a reparable wear-resistant material and damping device.

摘要

自愈合水凝胶能够自主修复损伤,提高其性能稳定性,并拓宽其作为软设备的应用范围。尽管引入动态相互作用增强了自愈合能力,但同时也削弱了水凝胶的强度。外部刺激(如加热)虽然能加速愈合过程,但也可能导致脱水。开发一种将快速愈合和高机械强度相结合的稳定修复策略具有挑战性。在此,我们介绍用于高强度水凝胶的“盐焊接”,其具有快速的室温自愈合能力。这是通过盐响应性聚(甲基丙烯酰胺)水凝胶中的动态硼酸酯键实现的。该过程包括“盐融合”,将裂缝转化为粘性液体以快速愈合,随后是“盐固结”,使水凝胶变硬。这些水凝胶在室温下95分钟内实现了23兆帕的愈合后强度,愈合效率接近100%。利用其可调的机械强度和快速愈合速率,这种水凝胶可定制用于可修复耐磨材料和阻尼装置等应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4aa4/11759658/fed6b24bd17f/sciadv.adr9834-f1.jpg

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