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首页> 外文期刊>Journal of Colloid and Interface Science >Inorganic/organic hybrid microcapsules: Melamine formaldehyde-coated Laponite-based Pickering emulsions
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Inorganic/organic hybrid microcapsules: Melamine formaldehyde-coated Laponite-based Pickering emulsions

机译:无机/有机杂化微胶囊:三聚氰胺甲醛涂层的皂石基Pickering乳液

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A facile synthesis route to novel inorganic/organic hybrid microcapsules is reported. Laponite nanoparticles are surface-modified via electrostatic adsorption of Magnafloc, an amine-based polyelectrolyte allowing the formation of stable oil-in-water Pickering emulsions. Hybrid microcapsules can be subsequently prepared by coating these Pickering emulsion precursors with dense melamine formaldehyde (MF) shells. Employing a water-soluble polymeric stabiliser, poly(acrylamide-co-sodium acrylate) leads to stable hybrid microcapsules that survive an alcohol challenge and the ultrahigh vacuum conditions required for SEM studies. Unfortunately, the presence of this copolymer also leads to secondary nucleation of excess MF latex particles in the aqueous continuous phase. However, since the Magnafloc is utilised at submonolayer coverage when coating the Laponite particles, the nascent cationic MF nanoparticles can deposit onto anionic surface sites on the Laponite, which removes the requirement for the poly(acrylamide-co-sodium acrylate) component. Following this electrostatic adsorption, the secondary amine groups on the Magnafloc chains can react with the MF, leading to highly robust cross-linked MF shells. The absence of the copolymer leads to minimal secondary nucleation of MF latex particles, ensuring more efficient deposition at the surface of the emulsion droplets. However, the MF shells appear to become more brittle, as SEM studies reveal cracking on addition of ethanol. (C) 2015 Elsevier Inc. All rights reserved.
机译:报道了一种新颖的无机/有机杂化微胶囊的合成途径。锂皂石纳米颗粒通过Magnafloc的静电吸附进行了表面改性,Magnafloc是一种基于胺的聚电解质,可形成稳定的水包油Pickering乳液。杂化微胶囊可以随后通过在这些Pickering乳液前体上涂上致密的三聚氰胺甲醛(MF)外壳来制备。聚(丙烯酰胺-丙烯酸钠)采用水溶性聚合物稳定剂,可制得稳定的杂化微胶囊,可经受酒精挑战和SEM研究所需的超高真空条件。不幸的是,该共聚物的存在还导致在水性连续相中过量MF胶乳颗粒的二次成核。但是,由于Magnafloc在涂覆Laponite颗粒时用于亚单层覆盖,因此新生的阳离子MF纳米颗粒可以沉积在Laponite的阴离子表面部位上,这消除了对聚丙烯酰胺-丙烯酸钠共聚组分的要求。在这种静电吸附之后,Magnafloc链上的仲胺基团可以与MF反应,从而导致高度坚固的交联MF壳。共聚物的不存在导致MF胶乳颗粒的二次成核最少,从而确保更有效地沉积在乳液液滴的表面。但是,由于SEM研究表明添加乙醇会导致开裂,MF壳似乎变得更脆。 (C)2015 Elsevier Inc.保留所有权利。

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