材料科学
铁磁性
钇铁石榴石
铁氧体(磁铁)
烧结
矫顽力
活化能
钇
铋铁氧体
磁铁
核磁共振
磁化
分析化学(期刊)
凝聚态物理
冶金
化学
电介质
复合材料
物理化学
光电子学
磁场
多铁性
量子力学
物理
色谱法
氧化物
铁电性
作者
Ning Jia,Huwiwu Zhang,Vincent G. Harris
摘要
Abstract The traditional method of ferrite synthesis is based upon solid‐state reaction. The advantages of this approach include simplicity, cost effectiveness, and suitability for commercial process scaling. However, there exist shortcomings in that impurities and defects adversely affect magnetic properties. Here, iron‐depleted compositions of bismuth‐substituted yttrium iron garnet (ie Bi:YIG) were studied with emphasis placed on the impact of synthesis processing parameters upon the structure and gyromagnetic properties. It was shown that ferrimagnetic resonance linewidth experienced a minimum of 180.3 Oe (X‐band) when the sample stoichiometry was 4% depleted in iron (x = 0.2), a reduction of 29.3% from the parent compound. Concomitantly, iron depletion caused a systematic change in lattice parameter that resulted in a dilation of Goodenough‐Kanamori‐Anderson bond angles increasing exchange energy and magnetization. The substitution of Bi for Y on the dodecahedron sites altered the reaction path and decreased the activation energy effectively reducing sintering temperature. To establish a functional processing protocol, an ion diffusion model is presented to explain the demonstrated processing, structure, and performance paradigm.
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