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Robust Composite-Shell Microcapsules via Pickering Emulsification

机译:通过Pickering乳化技术获得坚固的复合壳微胶囊

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Microencapsulation technology has been increasingly applied toward the development of self-healing paints. Added to paint as a dry powder prior to spraying, the microcapsules store a liquid that can repair the protective barrier layer if released into a scratch. However, self-healing will not occur unless the microcapsules can withstand spray-painting, aggressive solvents in the paint, and long-term exposure to the elements. We have therefore developed a one-pot synthesis for the production of Pickering microcapsules with outstanding strength, solvent resistance, and barrier properties. Octadecyltrimethoxysilane-filled (OTS) microcapsules form via standard interfacial polycondensation, except that silica nanopowder (10-20 nm diameter) replaces the conventional surfactant or hydrocolloid emulsifier. Isophorone diisocyanate (IPDI) in the OTS core reacts with diethylenetriamine, polyethylenimine, and water to form a hard polymer shell along the interface. Compared to pure polyurea, the silica-polyurea composite improves the shelf life of the OTS by 10 times. The addition of SiO2 prevents leaching of OTS into xylenes and hexanes for up to 80 days, and the resulting microcapsules survive nebulization through a spray gun at 620 kPa in a 500 cSt fluid.
机译:微囊化技术已越来越多地应用于自修复涂料的开发。微胶囊在喷涂前以干粉形式添加到涂料中,可储存一种液体,如果释放出划痕,该液体可以修复保护性隔离层。但是,除非微胶囊能够承受喷漆,涂料中的侵蚀性溶剂以及长期暴露于元素的影响,否则不会发生自我修复。因此,我们开发了一种一锅合成方法,用于生产具有出色强度,耐溶剂性和阻隔性能的Pickering微胶囊。填充十八烷基三甲氧基硅烷(OTS)的微胶囊是通过标准的界面缩聚反应形成的,除了二氧化硅纳米粉(直径为10-20 nm)代替了传统的表面活性剂或水胶体乳化剂。 OTS核中的异佛尔酮二异氰酸酯(IPDI)与二亚乙基三胺,聚乙烯亚胺和水反应,沿界面形成硬质聚合物壳。与纯聚脲相比,二氧化硅-聚脲复合材料可将OTS的保质期提高10倍。 SiO2的添加可防止OTS浸出至二甲苯和己烷长达80天,并且所得的微胶囊在620 kPa的喷枪中于500 cSt的流体中雾化幸存。

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