聚氨酯
材料科学
氢键
异氰酸酯
共价键
化学工程
位阻效应
胺气处理
甲基丙烯酸酯
尿素
聚合物
聚脲
惰性
动态力学分析
高分子化学
热稳定性
化学键
有机化学
聚二甲基硅氧烷
六亚甲基二异氰酸酯
甲基丙烯酸甲酯
作者
Jhu‐Lin You,Yi‐Kuang Li,Kung‐Qian Lu,Shu‐Yi Liao,An‐Sin Guei
摘要
ABSTRACT To address health and safety concerns associated with volatile organic compounds (VOCs) in traditional solvent‐based coatings, we developed recyclable, ultraviolet‐curable polyurethane–acrylate (PUA) coatings incorporating dynamic hindered urea bonds (HUBs). The introduction of dynamic covalent bonds enables efficient self‐healing, recycling, and reprocessing of chemically cross‐linked networks, thereby extending the material lifecycle. Hindered urea bonds, formed from bulky amine and isocyanate groups, exhibit reversible behavior attributed to steric hindrance effects. In this study, 2‐(tert‐butylamino)ethyl methacrylate was employed as an end‐capping agent to create partially formed urea bonds within the polyurethane backbone, enhancing hydrogen bonding and improving the mechanical rigidity of the coatings. The segmented structure of polyurethane, comprising soft and hard domains, further facilitates dynamic hydrogen bond formation, promoting superior self‐healing and mechanical stability. Additionally, by adjusting the R value of polyurethane and the polydimethylsiloxane (PDMS) content, the hydrophobicity and environmental stability of the HUB‐containing PUA coatings were effectively enhanced. The resulting coatings demonstrated high healing efficiency, recyclability, anticorrosion performance, and hardness retention. This work offers a sustainable and practical approach for developing multifunctional, eco‐friendly protective coatings with potential applications in reducing waste and promoting material circularity.
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