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Photo-stimulated self-healing polyurethane containing dihydroxyl coumarin derivatives

机译:含二羟基香豆素衍生物的光刺激自修复聚氨酯

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摘要

A novel polyurethane was synthesized, which consisted of isophorone diisocyanate, polyethylene glycol and photo-reversible moiety 5,7-bis(2-hydroxyethoxy)-4-methylcoumarin. By taking advantage of reversible photodimerization and photocleavage habit of coumarin, the polyurethane can be repeatedly crosslinked and de-crosslinked under successive UV irradiations at 350 and 254 nm. More importantly, damages in crosslinked version of the polyurethane can be re-bonded through chain reconnection on fracture surfaces resulting from the photochemical reactions, as characterized by mechanical strength restoration tests. Compared to the previous proof-of-concept trial with monohydroxyl coumarin derivatives as the photosensitive groups, the application of dihydroxyl coumarin derivatives in the present work prevented the undesirable gelation during synthesis and enabled properties-oriented structure adjustment of polymerization products. Besides, structure-performance relationship study of the polyurethane revealed that rubbery domains resulting from microphase separation were necessary for the photo-remending with high efficiency.
机译:合成了一种新型的聚氨酯,其由异佛尔酮二异氰酸酯,聚乙二醇和光可逆部分5,7-双(2-羟基乙氧基)-4-甲基香豆素组成。通过利用香豆素的可逆光致二聚化和光解习性,可以在连续的350和254 nm紫外线照射下使聚氨酯重复交联和去交联。更重要的是,聚氨酯的交联形式的损坏可以通过光化学反应导致的断裂表面上的链重新连接而重新键合,其特征在于机械强度恢复测试。与先前的以单羟基香豆素衍生物作为光敏基团的概念验证试验相比,在本工作中二羟基香豆素衍生物的应用可防止合成过程中发生不良凝胶化,并使聚合产物的性能导向结构得以调整。此外,聚氨酯的结构-性能关系研究表明,微相分离产生的橡胶状区域对于高效光修补是必需的。

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