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用于提高医疗器械可靠性的自修复聚脲涂层的发生条件及特性的外部因素:一篇综述短文

Extrinsic Conditions for the Occurrence and Characterizations of Self-Healing Polyurea Coatings for Improved Medical Device Reliability: A Mini Review.

作者信息

Yang Haoyi, Yang Yusheng, Li Yuanzhe, Hope James, Choo WanLuoh

机构信息

NUS College of Design and Engineering, National University of Singapore, 118429, Singapore.

Carbon Neutrality Research Lab, China Academy of Art, Hangzhou, 310002, China.

出版信息

ACS Omega. 2023 Jul 18;8(30):26650-26662. doi: 10.1021/acsomega.3c02723. eCollection 2023 Aug 1.

Abstract

The development of self-healing materials has gained significance in the medical field to enhance the longevity and reliability of medical devices and implants. Material degradation caused by mechanical stress, environmental factors, and damage during use can lead to failure and necessitate manual inspection and maintenance. Self-healing materials, including polymers and elastomers, offer a promising solution by activating microdamage repair mechanisms. Polyurea coatings, known for their durability, flexibility, and versatility, have found widespread applications in various industries to prevent corrosion and abrasion and impact damage. This review focuses on the self-healing capability of polyurethane coatings and the efficacy of fabricated microcapsules. Experimental results elucidate the necessary conditions for achieving self-healing in polyurethane coatings encapsulated with suitable healing agents. These factors directly impact the self-healing potential of polyurea coatings and provide insights for medical device manufacturers seeking optimal coatings. The report also discusses challenges in fabrication and sample preparation, along with limitations of the project and recommendations for future research.

摘要

自修复材料的发展在医学领域具有重要意义,有助于提高医疗设备和植入物的使用寿命及可靠性。机械应力、环境因素以及使用过程中的损伤所导致的材料降解,可能会引发故障,进而需要人工检查和维护。包括聚合物和弹性体在内的自修复材料,通过激活微损伤修复机制提供了一种很有前景的解决方案。聚脲涂层以其耐久性、柔韧性和多功能性而闻名,已在各个行业广泛应用于防止腐蚀、磨损和冲击损伤。本综述聚焦于聚脲涂层的自修复能力以及所制备微胶囊的功效。实验结果阐明了在封装有合适修复剂的聚脲涂层中实现自修复的必要条件。这些因素直接影响聚脲涂层的自修复潜力,并为寻求最佳涂层的医疗设备制造商提供了见解。该报告还讨论了制造和样品制备方面的挑战,以及项目的局限性和对未来研究的建议。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/81eb/10399160/e9712fb39afe/ao3c02723_0001.jpg

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