首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Peculiar porous alpha-Fe2O3, gamma-Fe2O3 and Fe3O4 nanospheres: Facile synthesis and electromagnetic properties
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Peculiar porous alpha-Fe2O3, gamma-Fe2O3 and Fe3O4 nanospheres: Facile synthesis and electromagnetic properties

机译:奇特的多孔α-Fe2O3,γ-Fe2O3和Fe3O4纳米球:简便的合成和电磁性能

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摘要

We reported a facile approach to prepare peculiar porous alpha-Fe2O3, gamma-Fe2O3 and Fe3O4 nanospheres by combining a facile hydrothermal route with a calcination process in Ar or H-2 atmosphere. The synthesized monodisperse potous alpha-Fe2O3 nanospheres with uniform average diameters of similar to 60 nm in fact contained randomly distributed pores. A close view further revealed that there are two types of pores, one is large mesopores (ca. 15-20 nm) in the center, and the other is small mesopores (ca. <10 nm) in the outside. After calcining in Ar or H-2, the obtained alpha-Fe2O3, gamma-Fe2O3 and Fe3O4 nanospheres preserved the similar morphology and particle size as the uncalcined alpha-Fe2O3 nanospheres, indicating the as-prepared alpha-Fe2O3 nanospheres are stable under Ar and H-2-annealing heat treatment Comparing with all the paraffin composites, it was found that the porous alpha-Fe2O3 nanosphere/paraffin composites exhibit a higher permittivity level. A minimum reflection loss (RL) of 25 dB was observed at similar to 13 GHz for the porous alpha-Fe2O3 nanosphere/paraffin composites with a thickness of 3.5 mm, and the effective absorption frequency (RL < 10 dB) ranged from 9.9 to 15.1 GHz. The composites exhibited better absorption properties than the magnetic porous gamma-Fe2O3 and Fe3O4 nanosphere/paraffin composites. (C) 2014 Elsevier B.V. All rights reserved.
机译:我们报道了一种简便的方法,该方法通过将便捷的水热路线与Ar或H-2气氛中的煅烧过程相结合来制备特殊的多孔α-Fe2O3,γ-Fe2O3和Fe3O4纳米球。合成的均匀平均直径类似于60 nm的单分散多孔α-Fe2O3纳米球实际上包含随机分布的孔。进一步观察发现,有两种类型的孔,一种是在中心的大中孔(约15-20 nm),另一种是在外面的小中孔(约<10 nm)。在Ar或H-2中煅烧后,所获得的α-Fe2O3,γ-Fe2O3和Fe3O4纳米球保留了与未煅烧的α-Fe2O3纳米球相似的形态和粒径,表明所制备的α-Fe2O3纳米球在Ar和H2下稳定。 H-2-退火热处理与所有石蜡复合材料相比,发现多孔α-Fe2O3纳米球/石蜡复合材料表现出较高的介电常数。对于厚度为3.5 mm的多孔α-Fe2O3纳米球/石蜡复合材料,在类似于13 GHz的条件下,观察到的最小反射损耗(RL)为25 dB,有效吸收频率(RL <10 dB)为9.9至15.1。 GHz。该复合材料表现出比磁性多孔γ-Fe2O3和Fe3O4纳米球/石蜡复合材料更好的吸收性能。 (C)2014 Elsevier B.V.保留所有权利。

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