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Bi_2O_3-doping controlled magnetic and dielectric properties of low-temperature co-fired NiCuZn ferrite for high-frequency applications

机译:用于高频应用的低温共烧NiCuZn铁氧体的Bi_2O_3-掺杂控制磁和介电性能

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NiCuZn ferrite, due to its good magnetic properties, is a near optimal material for low-temperature co-fired ceramic (LTCC) filter applications. In this study, low temperature (860 degrees C and 880 degrees C) co-fired Ni0.26Cu0.22Zn0.52Fe2O4 ferrites with different quantities of Bi2O3 (1-11 wt% with an increment of 2 wt%) were synthesized using a solid-state reaction. The effect of the Bi2O3 additive on phase formation, microstructure, magnetic permeability, and dielectric permittivity are investigated. The results indicate that a suitable amount of Bi2O3 doping can increase both bulk density and the magnetic properties. The superfluous Bi2O3 and Fe3+ ions form Bi25FeO39, which improves the dielectric properties. More specifically, the sample with 5 wt% Bi2O3, sintered at 880 degrees C, shows excellent magnetic permeability (mu ' similar to 130 @ 1-10 MHz), low magnetic loss (tan delta(mu) similar to 0.026), and a high cut-off frequency (similar to 100 MHz). The sample with 9 wt% Bi2O3, sintered at 880 degrees C, exhibits excellent dielectric permittivity (epsilon ' similar to 14.5 @ 1-400 MHz), low dielectric loss (tan delta(epsilon) similar to 0.0075), and a high cut-off frequency (similar to 1 GHz). These observations indicate that NiCuZn ferrites, with the right amount of Bi2O3, are promising candidate materials for LTCC applications.
机译:NiCuZn铁氧体由于其良好的磁性,是低温共烧陶瓷(LTCC)过滤器应用的近乎理想的材料。在这项研究中,使用固体合成了具有不同Bi2O3(1-11 wt%,增量为2 wt%)的低温共烧Ni0.26Cu0.22Zn0.52Fe2O4铁氧体(860℃和880℃)。态反应。研究了Bi2O3添加剂对相形成,微观结构,磁导率和介电常数的影响。结果表明,适量的Bi 2 O 3掺杂可以增加体积密度和磁性。多余的Bi2O3和Fe3 +离子形成Bi25FeO39,从而改善了介电性能。更具体地说,在880摄氏度下烧结的具有5 wt%Bi2O3的样品显示出优异的磁导率(μ'类似于130 @ 1-10 MHz),低磁损耗(tanδ(μ)类似于0.026)和高截止频率(类似于100 MHz)。在880摄氏度下烧结的具有9 wt%Bi2O3的样品表现出优异的介电常数(ε类似于1-4.5在1-400 MHz时的14.5),低介电损耗(tanδ(ε类似于0.0075))和高截止损耗关闭频率(类似于1 GHz)。这些观察结果表明,含适量Bi2O3的NiCuZn铁氧体是有希望用于LTCC应用的候选材料。

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