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An Efficient Route to Rattle-Type Fe3O4@SiO2 Hollow Mesoporous Spheres Using Colloidal Carbon Spheres Templates

机译:使用胶态碳球模板的摇铃型Fe3O4 @ SiO2空心介孔球的有效途径

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摘要

Rattle-type Fe3O4@SiO2 hollow mesoporous spheres with large cavities have been successfully prepared by using the colloidal carbon spheres as the templates. The spheres are well monodisperse and nearly uniform in dimension with particle size of ca. 900 nm. The thickness of the mesoporous silica shell is about 100 nm, and only one Fe3O4 particle of ca. 100 nm in diameter is encapsulated in each hollow mesoporous silica sphere. The magnetic measurement indicated that the Fe3O4@SiO2 hollow mesoporous spheres exhibited ferromagnetic behavior with the magnetization saturation of 1.6 emu/g. Using aspirin as a model drug, the Fe3O4@SiO2 hollow mesoporous spheres showed high drag loading capacity and sustained release property. Therefore, this kind of magnetic hollow mesoporous spheres provides a very promising candidate for application in a targeted drug delivery system.
机译:以胶体碳球为模板,成功制备了具有大孔洞的Rattle型Fe3O4 @ SiO2中空介孔球。这些球是很好的单分散性,尺寸几乎均匀,粒径约为。 900纳米介孔二氧化硅壳的厚度为约100 nm,并且只有一个Fe3O4颗粒约。在每个中空介孔二氧化硅球中封装了直径为100 nm的颗粒。磁性测量表明,Fe3O4 @ SiO2空心介孔球表现出铁磁行为,磁化饱和度为1.6 emu / g。以阿司匹林为模型药物,Fe3O4 @ SiO2空心介孔球具有较高的阻载能力和缓释性能。因此,这种磁性空心中孔球体为靶向药物递送系统中的应用提供了非常有希望的候选者。

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