Ce–Dy substituted barium hexaferrite nanoparticles with large coercivity for permanent magnet and microwave absorber application

矫顽力 材料科学 纳米晶材料 微波食品加热 结构精修 分析化学(期刊) 微晶 反射损耗 钡铁氧体 相(物质) 铁氧体(磁铁) 结晶学 晶体结构 复合材料 化学 冶金 纳米技术 复合数 凝聚态物理 量子力学 色谱法 物理 有机化学
作者
G B Todkar,Renuka Apparao Kunale,R N Kamble,Khalid Mujasam Batoo,Muhammad Farzik Ijaz,Ali Imran,Muhammad Hadi,Emad H. Raslan,Sagar E. Shirsath,R.H. Kadam
出处
期刊:Journal of Physics D [Institute of Physics]
卷期号:54 (29): 294001-294001 被引量:75
标识
DOI:10.1088/1361-6463/abf864
摘要

Abstract M-type barium hexaferrites (BaM) with the substitution of Ce–Dy ions were synthesized using the sol-gel auto-ignition method. The prepared materials were explored for their application as a permanent magnet and microwave absorbing material. The structural properties, phase evaluation, micro-strain, morphological analysis, magnetic behaviour, microwave absorbing properties and optical properties were studied by employing various techniques. The structural parameters and phase identification obtained by Rietveld refinement confirmed the formation of an M-type hexaferrite structure for pure BaM, whereas Ce–Dy substitution induced secondary phases of cubic CeO 2 and ortho DyFeO 3 . Crystallite size obtained from Williamson–Hall plots increased from 27.1 nm to 30.8 nm with the introduction of Ce–Dy ions in BaM. The nanocrystalline nature of the prepared samples was confirmed using scanning and transmission electron microscopy techniques. Fourier transform infrared spectra of all the samples were recorded in the wavenumber range of 400–4000 cm −1 and also supported the x-ray diffraction findings by confirming the formation of samples with hexaferrite structures. Coercivity of the BaM hexaferrites improved from 4430 to 5721 Oe with the Ce–Dy substitution. A Ce–Dy substituted BaM hexaferrite sample of 3 mm thickness showed a maximum reflection loss of −16.3 dB around 16.7 GHz. Permittivity and permeability studies were carried out to understand the microwave absorption behaviour.
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