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Low temperature-fired Ni-Cu-Zn ferrite nanoparticles through auto-combustion method for multilayer chip inductor applications

机译:自动燃烧法低温烧制Ni-Cu-Zn铁氧体纳米粒子在多层片式电感器中的应用

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摘要

Ferrite nanoparticles of basic composition Ni0.7-xZnxCu0.3Fe2O4 (0.0 ≤ x ≤ 0.2, x = 0.05) were synthesized through auto-combustion method and were characterized for structural properties using X-ray diffraction [XRD], scanning electron microscopy, transmission electron microscopy, and Fourier transform infrared spectroscopy [FT-IR]. XRD analysis of the powder samples sintered at 600°C for 4 h showed the cubic spinel structure for ferrites with a narrow size distribution from 28 to 32 nm. FT-IR showed two absorption bands (v1 and v2) that are attributed to the stretching vibration of tetrahedral and octahedral sites. The effect of Zn doping on the electrical properties was studied using dielectric and impedance spectroscopy at room temperature. The dielectric parameters (ε', ε″, tanδ, and σac) show their maximum value for 10% Zn doping. The dielectric constant and loss tangent decrease with increasing frequency of the applied field. The results are explained in the light of dielectric polarization which is similar to the conduction phenomenon. The complex impedance shows that the conduction process in grown nanoparticles takes place predominantly through grain boundary volume.>PACS: 75.50.Gg; 78.20; 77.22.Gm.
机译:通过自动燃烧法合成了基本成分为Ni0.7-xZnxCu0.3Fe2O4(0.0≤x≤0.2,x = 0.05)的铁氧体纳米颗粒,并通过X射线衍射[XRD],扫描电子显微镜,透射率表征了其结构性能电子显微镜和傅里叶变换红外光谱[FT-IR]。对在600°C烧结4 h的粉末样品的XRD分析表明,铁素体的立方尖晶石结构具有从28至32 nm的窄尺寸分布。 FT-IR显示两个吸收带(v1和v2),归因于四面体和八面体位点的拉伸振动。在室温下使用介电和阻抗谱研究了Zn掺杂对电性能的影响。介电参数(ε',ε'',tanδ和σac)表示10%Zn掺杂时的最大值。介电常数和损耗角正切随施加电场频率的增加而降低。根据与传导现象相似的介电极化来解释结果。复阻抗表明,生长的纳米颗粒的导电过程主要通过晶界体积发生。> PACS :75.50.Gg; 78.20; 77.22。

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