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One-pot hydrothermal synthesis of highly monodisperse water-dispersible hollow magnetic microspheres and construction of photonic crystals

机译:一锅水热合成高度单分散的水分散空心磁性微球和光子晶体的构建

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摘要

Water-dispersible monodisperse hollow Fe3O4 microspheres were prepared via a one-pot hydrothermal process based on FeCl3·6H2O, sodium citrate, urea and sodium polyacrylate (PAAS). Different alkali sources and FeCl3·6H2O amounts were added to investigate the formation mechanism, and a gas-bubble-assisted Ostwald ripening process was possibly responsible for the formation of hollow structure. In the process, the particle size and morphology could be effectively controlled by the slightchange of FeCl3·6H2O addition amount. Meanwhile, monodisperse solid microspheres were obtained when sodium acetate was added to offer alkaline environment. The microspheres exhibited superparamagnetic properties with high saturation magnetization value about 76.7 emu g~(-1) at room temperature, and the BET surface area of the sample was 50.04 m~2g~(-1). Besides, it was found that the particles could be used for constructing photonic crystals. Such monodisperse hollow Fe3O4 microspheres have a great application potential in biomedicine, MR1 agents and color display areas.
机译:基于FeCl3·6H2O,柠檬酸钠,尿素和聚丙烯酸钠(PAAS)的一锅水热法制备了水分散性单分散空心Fe3O4微球。添加不同的碱源和FeCl3·6H2O量以研究其形成机理,并且气泡辅助的Ostwald成熟过程可能是中空结构形成的原因。在此过程中,FeCl3·6H2O添加量的微小变化可以有效地控制粒径和形貌。同时,通过添加乙酸钠以提供碱性环境,获得了单分散的固体微球。微球具有超顺磁性,在室温下具有约76.7 emu g〜(-1)的高饱和磁化强度,样品的BET表面积为50.04 m〜2g〜(-1)。此外,发现该颗粒可用于构建光子晶体。这种单分散的空心Fe3O4微球在生物医学,MR1试剂和彩色显示领域具有巨大的应用潜力。

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