首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Low-temperature sintering synthesis and electromagnetic properties of NiCuZn/BaTiO3 composite materials
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Low-temperature sintering synthesis and electromagnetic properties of NiCuZn/BaTiO3 composite materials

机译:低温烧结合成和尼古萨/ BATIO3复合材料的电磁特性

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摘要

In this study, various amounts of BaTiO3 ceramics (BTO) were introduced into Ni0.15Cu0.24Zn0.61Fe2O4 (NCZF) via solid-state reaction method and sintered at 920 degrees C with 2 wt% Bi2O3 addition. Obviously, the magnetic properties were affected violently but dielectric behaviors were improved, and the variations showed great regularity. We obtained composite materials with well magnetic and dielectric properties which can meet different design requirements of devices. To be specific, phase distribution and composition, microstructure morphology, magnetic and dielectric properties of these composites were systematically investigated via X-ray diffraction (XRD), scanning electron microscopy (SEM), and impedentiometry. XRD analysis results proved that the biphase (ferrite phase and ceramic phase) was produced successfully, whereas SEM micrographs revealed that grain size decreased with the content of BTO ceramic. Magnetic properties, such as saturation magnetization (4 pi M-s), coercivity (H-c), permeability (mu'), and quality factor (Q) can vary with the amount of BTO ceramics. By adding BTO to NCZF, electrical properties, such as dielectric constant (epsilon') and dielectric loss (tan delta) were remarkably improved. Indeed, when the content of BTO ceramics varied from 5 wt% to 10 wt%, so-prepared composites possess outstanding electromagnetic properties (mu' > 50.5, Q > 60, epsilon' = 23.8, tan delta < 4.76 x 10(-4)). Therefore, these materials can be further exploited for the development of advanced integration, miniaturized, and multifunctional information system. (c) 2019 Elsevier B.V. All rights reserved.
机译:在该研究中,通过固态反应方法将各种量的BATIO3陶瓷(BTO)引入Ni0.15Cu0.24Zn0.61Fe 2 O 4(NCZF)中,并在920℃下烧结,2wt%Bi2O 3加入。显然,磁性受影响剧烈,但改善了介电行为,并且变化显示了巨大规律性。我们获得了具有良好磁性和介电性能的复合材料,其可以满足器件的不同设计要求。要具有特异性,通过X射线衍射(XRD),扫描电子显微镜(SEM)和阻力度,通过X射线衍射(XRD)和阻力度,通过X射线衍射(扫描电子显微镜(SEM)和所述复合材料的微观结构形貌,微观结构形貌,磁性和介电性能。 XRD分析结果证明了双相(铁氧体相和陶瓷相)成功生产,而SEM显微照片显示晶粒尺寸随着BTO陶瓷的含量降低。磁性特性,例如饱和磁化强度(4 pi m-s),矫顽力(H-c),渗透率(mu')和质量因子(q)可以随着BTO陶瓷的量而变化。通过将BTO加入NCZF,可以显着提高电特性,例如介电常数(ε)和介电损耗(Tan delta)。实际上,当BTO陶瓷的含量变化为5wt%至10wt%时,所制备的复合材料具有出色的电磁特性(MU'> 50.5,Q> 60,EPSILON'= 23.8,TAN DELTA <4.76×10(-4 )))。因此,可以进一步利用这些材料来开发高级集成,小型化和多功能信息系统。 (c)2019 Elsevier B.v.保留所有权利。

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