Synthesis and characterization of magnetic polymer microspheres with a core–shell structure

Ming Lu, Shu Bai, Kun Yang, Yan Sun
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引用次数: 14

Abstract

Non-porous magnetic polymer microspheres with a core–shell structure were prepared by a novel micro-suspension polymerization technique. A stable iron oxide ferrofluid was used to supply the magnetic core, and the polymeric shell was made of glycidyl methacrylate (GMA monomer) and ethylene dimethacrylate (cross-linker). In the preparation, polyvinyl alcohol was used as the stabilizer, and a lauryl alcohol mixture as the dispersant. The influence of various conditions such as aqueous phase volume, GMA and initiator amounts, reaction time and stirring speed on the character of the microspheres was investigated. The magnetic microspheres were then characterized briefly. The results indicate that the microspheres with active epoxy groups had a narrow size distribution range from 1 to 10 μm with a volume-weighted mean diameter of 4.5 μm. The saturation magnetization reached 19.9 emu/g with little coercivity and remanence.

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核壳结构磁性高分子微球的合成与表征
采用新型微悬浮聚合技术制备了核壳结构的无孔磁性聚合物微球。采用稳定的氧化铁铁磁流体作为磁芯,以甲基丙烯酸缩水甘油酯(GMA单体)和二甲基丙烯酸乙烯(交联剂)为聚合物外壳。在制备中,聚乙烯醇作为稳定剂,十二醇混合物作为分散剂。考察了水相体积、GMA、引发剂用量、反应时间、搅拌速度等条件对微球性能的影响。然后对磁性微球进行了简要表征。结果表明:含活性环氧基的微球粒径分布范围为1 ~ 10 μm,体积加权平均直径为4.5 μm;饱和磁化强度达到19.9 emu/g,矫顽力和剩余物较小。
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