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Facile Method for Synthesis of Fe3O4@Polymer Microspheres and Their Application As Magnetic Support for Loading Metal Nanoparticles

机译:Fe3O4 @聚合物微球的简便合成方法及其作为负载金属纳米粒子的磁性载体的应用

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A general method was developed for the synthesis of Fe3O4@polymer microspheres with well-defined core-shell structure and various functional groups and strong magnetization through a facile in situ distillation-precipitation polymerization. In this approach, the as-prepared Fe3O4 microspheres were directly coated by a polymer shell through the hydrogen bond interaction between the Fe3O4 micropsheres and oligomer without any surface modification. Moreover, hydrophilic or hydrophobic monomer or even their comono-mers with different functional groups such as carboxyl, hydroxyl,amide, and ester were facilely encapsulated onto the surface of the magnetite microspheres. The thickness of the polymer shell layer was tuned by the feed of monomer amount. As for application, Fe3O4@P(MBAAm-co-MAA) microspheres that contained carboxyl groups were used as a magnetic catalyst support to load a series of metallic nanoparticles such as Ag, Pt, and Au. These strong magnetic microspheres were characterized by transmission electron microscopy, X-ray diffraction, Fourier-transform infrared spectra, thermogravimetric analysis, and vibrating sample magnetometry.
机译:开发了一种通用的方法,用于合成Fe3O4 @聚合物微球,该微球具有明确的核-壳结构和各种官能团,并且通过容易的原位蒸馏-沉淀聚合反应获得强磁化强度。在这种方法中,原样制备的Fe3O4微球通过Fe3O4微粒与低聚物之间的氢键相互作用直接被聚合物壳包覆,没有任何表面修饰。而且,亲水或疏水单体或什至它们的具有不同官能团如羧基,羟基,酰胺和酯的共聚单体被容易地包封在磁铁矿微球的表面上。聚合物壳层的厚度通过单体量的进料来调节。对于应用,含有羧基的Fe3O4 @ P(MBAAm-co-MAA)微球被用作磁性催化剂载体,以负载一系列金属纳米粒子,例如Ag,Pt和Au。这些强磁性微球的特征在于透射电子显微镜,X射线衍射,傅立叶变换红外光谱,热重分析和振动样品磁强法。

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