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首页> 外文期刊>Journal of Solid State Chemistry >Solvothermal synthesis, characterization and magnetic properties of α-Fe_2O_3 and Fe3O_4 flower-like hollow microspheres
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Solvothermal synthesis, characterization and magnetic properties of α-Fe_2O_3 and Fe3O_4 flower-like hollow microspheres

机译:α-Fe_2O_3和Fe3O_4花状空心微球的溶剂热合成,表征和磁性

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摘要

The flower-like hollow microspheres of α-Fe_2O_3 and Fe_3O_4 have been prepared by a solvothermal combined with heat treatment method. A solvothermal method is adopted to synthesize flower-like hollow microspheres of the ferrous alkoxide precursor. N,N′-methylenebisacrylamide and CH_3COONa play important roles in the formation of the flower-like hollow microspheres of the ferrous alkoxide precursor. The powder of flower-like hollow microspheres of ferrous alkoxide precursor can be transformed to flower-like hollow microspheres of α-Fe_2O_3 and Fe_3O_4 by heat treatment at 400 °C for 1 h in air and flowing nitrogen gas, respectively. During the heat treatment process, the morphology and size of the precursor can be preserved. The growth mechanism of the precursor is studied by time-dependent experiments, and the results show that the Ostwald ripening is responsible for the formation of hollow microspheres. α-Fe_2O_3 hollow microspheres exhibit a high coercivity value of 2738 Oe, and Fe _3O_4 hollow microspheres have a saturation magnetization of 58.3 emu g~(-1).
机译:溶剂热结合热处理法制备了α-Fe_2O_3和Fe_3O_4的花状空心微球。采用溶剂热法合成醇亚铁前体的花状空心微球。 N,N'-亚甲基双丙烯酰胺和CH_3COONa在烷氧基亚铁前体的花状空心微球的形成中起重要作用。通过在空气中和在流动的氮气中分别在400°C下热处理1 h,可以将醇盐亚铁前体的花状空心微球粉末分别转化为α-Fe_2O_3和Fe_3O_4的花状空心微球。在热处理过程中,可以保留前体的形态和尺寸。通过时变实验研究了前驱体的生长机理,结果表明,奥斯特瓦尔德熟化是中空微球形成的原因。 α-Fe_2O_3空心微球的矫顽力值为2738 Oe,Fe_3O_4空心微球的饱和磁化强度为58.3 emu g〜(-1)。

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