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Hematite nanoparticles as polystyrene microsphere coatings and hollow spheres: preparation and characterization

机译:赤铁矿纳米粒子作为聚苯乙烯微球涂层和空心球体的制备和表征

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摘要

A novel method of fabricating composite particles with core-shell structures is demonstrated. The particles comprised monodisperse submicrometer-sized copolymer latex spheres as cores and Fe2O3 crystallites as shells. The shell was formed by controlled hydrolysis of aqueous iron solutions, and the growth of hematite on the surface of the copolymer spheres was controlled by slow injection. Hollow spheres were obtained by calcinations of the so-coated copolymer lattices at 500degreesC in air. The void size of these hollow spheres was determined by the diameter of the copolymer template, and the wall thickness could be easily controlled in the range of 20-60 nm by using this coating process. The structure and the composition of the spheres were characterized by X-ray diffraction (XRD), transmission electron microscopy (TEM), and thermogravimetric analysis (TGA). It can be seen that a crystallite change and a crystal phase transformation occurred during coating and calcination of the composite spheres. The formation of the composite particles is simply explained by the nucleation of iron oxide on the surface of the latex followed by growth of the iron compound shell.
机译:提出了一种新型的核壳结构复合粒子的制备方法。颗粒包含单分散的亚微米级共聚物胶乳球作为核,Fe2O3晶体作为壳。通过控制铁水溶液的水解来形成壳,并通过缓慢注射来控制赤铁矿在共聚物球表面的生长。通过在空气中在500℃下煅烧如此涂覆的共聚物晶格而获得空心球。这些空心球的空隙尺寸由共聚物模板的直径确定,并且通过使用该涂覆方法可以容易地将壁厚控制在20-60nm的范围内。球的结构和组成通过X射线衍射(XRD),透射电子显微镜(TEM)和热重分析(TGA)进行表征。可以看出,在复合球的涂覆和煅烧期间发生了微晶变化和晶体相变。复合颗粒的形成可以通过在胶乳表面形成氧化铁成核,然后生长铁化合物壳来简单解释。

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