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Hexaferrite–FeCo nanocomposite particles and their electrical and magnetic properties at high frequencies

机译:六方铁氧体-FeCo纳米复合颗粒及其在高频下的电磁性能

摘要

Nanocomposites are realized by chemical reduction whereby the conducting magnetic particles of Fe–Co alloy are generated within the insulating ferrimagnetic $BaCo_2Fe_{16}O_{27}$ or $Ba_2Co_2Fe_{12}O_{22}$ hexaferrite matrix. Transmission electron microscopy revealed that metal nanoparticles precipitate coherently as thin flakes along the a–b planes of the derivative magnetoplumbite lattice of the hexaferrites above the characteristic reduction temperature, $T_R$ >375 °C in $H_2$ atmosphere. The coercivity increases with $T_R$ in the early stages of the solid-state precipitation and then decreases with the formation of larger fractions of Fe–Co alloy; a converse trend is noticed for magnetization. The complex permittivity increases with reduction to ~50 in the broad frequency range of 4–18 GHz. The complex permeability is also enhanced with the content of Fe–Co nanoparticles. It is proposed that the spin reorientation at the Fe–Co/hexaferrite interface gives rise to broadband response, rendering these composite particles useful as electromagnetic microwave absorbers.
机译:纳米复合材料通过化学还原实现,从而在绝缘亚铁磁性$ BaCo_2Fe_ {16} O_ {27} $或$ Ba_2Co_2Fe_ {12} O_ {22} $六价铁氧体基质中生成Fe-Co合金的导电磁性颗粒。透射电子显微镜显示,金属纳米颗粒在六价铁氧体的特征性还原温度高于$ T_R $> 375°C且在$ H_2 $大气中时,沿着六价铁氧体的衍生磁铅石晶格的a–b平面连贯地沉淀为薄片。在固态沉淀的早期,矫顽力随$ T_R $的增加而增加,然后随着较大比例的Fe-Co合金的形成而降低。磁化强度出现相反的趋势。在4–18 GHz的宽频率范围内,复介电常数随着减小到〜50而增加。 Fe-Co纳米粒子的含量也提高了复合磁导率。有人提出,Fe-Co /六铁氧体界面处的自旋重新取向会引起宽带响应,使这些复合颗粒可用作电磁微波吸收剂。

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