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Synthesis and properties of single domain sphere-shaped barium hexa-ferrite nano powders via an ultrasonic-assisted co-precipitation route

机译:超声辅助共沉淀法制备单畴球形六铁氧体钡纳米粉体及其性能

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摘要

To synthesize high quality barium hexa-ferrite nano powders, an ultrasonic-assisted co-precipitation method has been used and the influences of the ultrasonic technique on the particle morphologies and magnetic properties of the synthesized barium hexa-ferrite nano powders have been investigated. The results indicated that the introduction of ultrasonic energy into the co-precipitation process promoted the composition homogeneities of the co-precipitated precursors, minished their particle sizes, and exerted the additional surface barriers between the particles, which influenced both the phase formation and particle growth-up processes during the subsequent heating treatment and altered the particle sizes, size distributions and particle shapes of the final synthesized powders. The average particle sizes of the synthesized nano powders dramatically decreased from 210 nm to about 100 nm as the inputting ultrasonic power increased, while the size distribution became increasingly uniform except for a few of large particles existed as the inputting power approached to a high value. The magnetization at 1.4 T of the as-synthesized barium hexa-ferrite dramatically increased and approached to the highest value of 57.9 emu/g due to the elimination of multi-domain particles, the alleviation of particle adhesion and the evolution of particle shape from flake to quasi-sphere as well as the uniform particle size distribution as the ultrasonic assistance was employed, and slightly decreased because of the coarsening in particle sizes. (C) 2014 Elsevier B.V. All rights reserved.
机译:为了合成高质量的六铁酸钡纳米粉末,已经使用了超声辅助共沉淀法,并研究了超声技术对合成的六铁氧体钡纳米颗粒的颗粒形貌和磁性的影响。结果表明,将超声波能量引入共沉淀过程可促进共沉淀前体的组成均匀性,减小其粒径,并在颗粒之间施加额外的表面障碍,从而影响相形成和颗粒生长后续热处理过程中的混合过程,并改变了最终合成粉末的粒度,粒度分布和颗粒形状。随着输入超声功率的增加,合成的纳米粉体的平均粒径从210nm急剧减小到大约100nm,而随着输入功率接近高值,尺寸分布变得越来越均匀,除了少数大颗粒存在。合成后的六价铁氧体钡在1.4 T时的磁化强度显着增加,由于消除了多畴颗粒,减轻了颗粒的附着力以及从片状演化而形成的颗粒,达到了57.9 emu / g的最大值。由于使用了超声辅助,因此其具有近似于准球形的粒径以及均匀的粒径分布,并且由于粒径变大而略有减小。 (C)2014 Elsevier B.V.保留所有权利。

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