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A FeCO3 precursor-based route to microsized peanutlike Fe3O4

机译:基于FeCO3前体的途径,可制得类似花生米的Fe3O4

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摘要

It is reported in this paper that a microsized magnetic particle Fe3O4 with peanutlike morphology is successfully prepared from FeCO3 with the same morphology via direct-sealed thermal decomposition. The peanutlike FeCO3 is obtained by hydrothermal reaction of the mixed aqueous solution containing Fe3+ and CO32- in the presence of ascorbic acid. The dynamic formation process of the FeCO3 precursor and influence of reaction conditions on the FeCO3 morphology are discussed in detail. The results show that both concentrations of ascorbic acid and Fe3+ in the reactive system play critical roles in obtaining peanutlike morphology. With this method, other microsized Fe3O4 or Fe2O3 with ellipsoidal, ellipsoidal rods, or rodlike morphologies could also be developed.
机译:据报道,通过直接密封的热分解,成功地从具有相同形貌的FeCO3中成功地制备了具有花生样形貌的微细磁性颗粒Fe3O4。花生状FeCO3是在抗坏血酸的存在下,通过将含有Fe3 +和CO32-的混合水溶液进行水热反应获得的。详细讨论了FeCO3前体的动态形成过程以及反应条件对FeCO3形态的影响。结果表明,反应体系中抗坏血酸和Fe3 +的浓度均对获得花生样形态起关键作用。通过这种方法,还可以开发其他微细的Fe3O4或具有椭圆形,椭圆形棒或棒状形态的Fe2O3。

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