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首页> 外文期刊>Angewandte Chemie >Dynamic Interfacial Adhesion through Cucurbit[n]uril Molecular Recognition
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Dynamic Interfacial Adhesion through Cucurbit[n]uril Molecular Recognition

机译:通过葫芦[n] URIL分子识别的动态界面粘附

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摘要

Supramolecular building blocks, such as cucurbit[n]uril (CB[n])-based host-guest complexes, have been extensively studied at the nano- and microscale as adhesion promoters. Herein, we exploit a new class of CB[n]-threaded highly branched polyrotaxanes (HBP-CB[n]) as aqueous adhesives to macroscopically bond two wet surfaces, including biological tissue, through the formation of CB[8] heteroternary complexes. The dynamic nature of these complexes gives rise to adhesion with remarkable toughness, displaying recovery and reversible adhesion upon mechanical failure at the interface. Incorporation of functional guests, such as azobenzene moieties, allows for stimuli-activated on-demand adhesion/de-adhesion. Macroscopic interfacial adhesion through dynamic host-guest molecular recognition represents an innovative strategy for designing the next generation of functional interfaces, biomedical devices, tissue adhesives, and wound dressings.
机译:基于含有的基于葫芦(CB [N])的宿主复合物的超分子构建块已被广泛研究纳米和微尺寸作为粘合促进剂。 在此,我们利用一类新的CB [N] - 缩高高度分支的聚键(HBP-CB [N])作为水性粘合剂,以通过形成Cb [8]异畴络合物,宏观粘合两个湿表面,包括生物组织。 这些配合物的动态性质引起粘附,具有显着的韧性,在界面的机械故障时显示回收和可逆粘附。 掺入功能客人,如偶氮苯部分,允许刺激活化的按需粘合/去粘连。 通过动态宿主 - 客人分子识别的宏观界面粘附代表了设计下一代功能界面,生物医学装置,组织粘合剂和伤口敷料的创新策略。

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