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自修复聚氨酯的发展及其在柔性电子器件中的应用:综述

Development of Self-Healing Polyurethane and Applications in Flexible Electronic Devices: A Review.

作者信息

Du Jie, Zhao Xinlan, Li Yang, Lei Wanqing, Zhou Xing

机构信息

School of Art and Design, Xi'an University of Technology, Xi'an 710048, China.

Faculty of Printing, Packaging Engineering and Digital Media Technology, Xi'an University of Technology, Xi'an 710048, China.

出版信息

Polymers (Basel). 2025 Aug 22;17(17):2274. doi: 10.3390/polym17172274.

Abstract

Traditional polyurethanes have gained widespread application due to their excellent mechanical properties, wear resistance, and processability. However, these materials are susceptible to cracking or fracture under environmental stresses. In recent years, self-healing polyurethanes have garnered significant attention as a critical research field owing to their key capabilities, such as repairing physical damage, restoring mechanical strength, structural adaptability, and cost-effective manufacturing. This review systematically examines the healing mechanisms, structural characteristics, and performance metrics of self-healing polyurethanes, with in-depth analysis of their repair efficacy across various applications-particularly in flexible electronic devices. It demonstrates that self-healing polyurethanes overcome traditional failure modes in flexible electronics through self-repair-function integration mechanisms. Their stimuli-responsive healing behavior is driving the evolution of this field toward an intelligent regenerative electronics paradigm.

摘要

传统聚氨酯因其优异的机械性能、耐磨性和可加工性而得到广泛应用。然而,这些材料在环境应力下容易出现开裂或断裂。近年来,自修复聚氨酯作为一个关键研究领域受到了广泛关注,因为它们具有修复物理损伤、恢复机械强度、结构适应性和经济高效制造等关键能力。本文综述系统地研究了自修复聚氨酯的愈合机制、结构特征和性能指标,并深入分析了它们在各种应用中的修复效果,特别是在柔性电子器件中的应用。结果表明,自修复聚氨酯通过自修复功能集成机制克服了柔性电子器件中的传统失效模式。它们的刺激响应愈合行为正在推动该领域向智能再生电子范式发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/25c9/12430600/e7413fe32971/polymers-17-02274-g001.jpg

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