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Hermetically-Coated Superparamagnetic Fe2O3 Particles with SiO2 Nanofilms

机译:用SiO2纳米螺纹封闭式涂覆的超顺磁Fe2O3颗粒

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Magnetic nanoparticles are frequently coated with SiO2 to improve their functionality and bio-compatibility in a range of biomedical and polymer nanocomposite applications. In this paper, a scalable flame aerosol technology is used to produce highly dispersible, superparamagnetic iron oxide nanoparticles hermetically coated with silica to retain full magnetization performance. Iron oxide particles were produced by flame spray pyrolysis (FSP) of iron acetylacetonate in xylene/acetonitrile solutions, and the resulting aerosol was in situ coated with SiO2 by oxidation of swirling hexamethlydisiloxane vapor. The process allows independent control of the core Fe2O3 particle properties and the thickness of their silica coating film. This ensures that the non-magnetic SiO2 layer can be closely controlled and minimized. The optimal SiO2 content for complete (hermetic) encapsulation of the magnetic core particles was determined by isopropanol chemisorption. The magnetization of Fe2O3 coated with about 2 nm thin SiO2 layers was nearly identical to that of uncoated, pure Fe2O3 nanoparticles.
机译:磁性纳米颗粒经常用SiO 2涂覆,以改善其在一系列生物医学和聚合物纳米复合应用中的功能和生物相容性。在本文中,使用可伸缩的火焰气溶胶技术来生产高度可分散的超顺磁性氧化铁纳米粒子,气密地涂覆有二氧化硅以保持全磁化性能。通过火焰喷雾热解(FSP)在二甲苯/乙腈溶液中的火焰喷雾热解(FSP)产生氧化铁颗粒,并通过旋转六甲基硅氧烷蒸气氧化得到的气溶胶原位用SiO 2涂覆。该过程允许独立控制核心Fe2O3颗粒性质和其二氧化硅涂膜的厚度。这确保了非磁性SiO2层可以密切控制和最小化。通过异丙醇化学吸附测定磁芯颗粒的完全(隐蔽)封装的最佳SiO 2含量。涂有约2nm薄的SiO 2层的Fe 2 O 3的磁化几乎与未涂覆的纯Fe2O3纳米颗粒几乎相同。

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