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Surface-Active Monomer as a Stabilizer for Polyurea Nanocapsules Synthesized via Interfacial Polyaddition in Inverse Miniemulsion

机译:表面活性单体作为反相微乳液中界面加成合成聚脲纳米胶囊的稳定剂

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摘要

A surface-active monomer, polyisobutylene-succinimide pentamine (Lubrizol U), was used as a stabilizer for synthesizing polyurea nanocapsules with aqueous core via polyaddition at inverse miniemulsion droplet interface. Because of the presence of amine groups in the Lubrizol molecule, it is covalently incorporated into the polymeric interfacial layer after reaction, resulting in more compact (less permeable) capsule shell. The influence of the stabilizer and the monomer concentration oil the shell thickness, colloidal stability, average capsule size, and capsule size polydispersity were examined in detail. Different materials, Such as a water-soluble fluorescent dye and aqueous dispersion of magnetite nanoparticles with 10 rim in size, were used as inner phase of the polyurea capsules. The encapsulation efficiency was studied using fluorescein its a marker. As all example for biomedical application, the fluorescein-containing capsules were utilized in cell uptake experiments and Visualized using fluorescence microscopy.
机译:使用表面活性单体聚异丁烯-琥珀酰亚胺五胺(Lubrizol U)作为稳定剂,通过在反细乳液液滴界面处加聚来合成具有水核的聚脲纳米胶囊。由于路博润分子中存在胺基,因此在反应后将其共价结合到聚合物界面层中,从而使胶囊壳更致密(渗透性更差)。详细研究了稳定剂和单体浓度对壳厚度,胶体稳定性,平均胶囊大小和胶囊大小多分散性的影响。聚脲胶囊的内相使用了不同的材料,例如水溶性荧光染料和大小为10边缘的磁铁矿纳米颗粒的水分散液。使用荧光素作为标记物研究了包封效率。作为生物医学应用的所有实例,将含荧光素的胶囊用于细胞摄取实验中,并使用荧光显微镜观察。

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