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Nanobeads highly loaded with superparamagnetic nanoparticles prepared by emulsification and seeded-emulsion polymerization

机译:通过乳化和种子乳液聚合制得的超顺磁性纳米粒子高负载的纳米珠

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摘要

Functional superparamagnetic colloids possessing high saturation magnetization are prepared by emulsification of superparamagnetic nanoparticles (SPM NPs) and heterogeneous polymerization. The colloids consist of a core of densely packed NPs encapsulated within a thin polymer shell. The cores are made by emulsifying SPM NPs and toluene into an aqueous surfactant solution, and subsequently condensing the emulsion droplets by removal of the solvent generating clusters of SPM NPs. By tuning the emulsification condition, this approach allows for control over the size of the clusters from approximately 40 to 200 nm. The polymer shells encapsulating the clusters are made by using seeded-emulsion polymerization concepts. Control over the thickness of the shell and the incorporation of functional groups to the colloid is achieved. Characterization by thermogravimetric analysis (TGA) and magnetometry shows that these colloids have 66 wt % of magnetic material and saturation magnetization of 47 emu/g, confirming that this route generates colloids with a high loading of SPM NPs and high saturation magnetizations.
机译:具有超饱和磁化强度的功能性超顺磁性胶体是通过超顺磁性纳米粒子(SPM NPs)的乳化和非均相聚合制备的。胶体由包裹在薄聚合物壳中的密集堆积的NP核组成。通过将SPM NP和甲苯乳化到表面活性剂水溶液中,然后通过除去SPM NP的溶剂生成簇来浓缩乳液液滴,从而制得核。通过调整乳化条件,该方法可控制簇的尺寸从大约40到200 nm。包封团簇的聚合物壳是通过使用种子乳液聚合概念制备的。实现了对壳厚度的控制以及将官能团结合到胶体中。通过热重分析(TGA)和磁力分析法进行的表征表明,这些胶体的磁性材料含量为66 wt%,饱和磁化强度为47 emu / g,这证实了该途径产生的胶体具有高SPM NP负载量和高饱和磁化强度。

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