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首页> 外文期刊>Journal of magnetism and magnetic materials >Magnetic, dielectric and microwave absorption properties of rare earth doped Ni-Co and Ni-Co-Zn spinel ferrites
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Magnetic, dielectric and microwave absorption properties of rare earth doped Ni-Co and Ni-Co-Zn spinel ferrites

机译:稀土掺杂Ni-Co和Ni-Co-Zn尖晶石铁氧体的磁,介电和微波吸收特性

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In this article we analyze the electromagnetic properties of rare earth substituted Ni-Co and Ni-Co-Zn cubic ferrites in the microwave band, along with their performance as microwave absorbing materials. Ceramic samples with compositions Ni_(0.5)Co_(0.5)Fe_(2−x)R_xO_4 and Ni_(0.25)Co_(0.5)Zn_(0.25)Fe_(2−x)R_xO_4 (R=Y and La, x=0, 0.02), fabricated with the solid state reaction method, were characterized with regard to the complex permeability μ*(f) and permittivity ε*(f) up to 20 GHz. The rare earth substitutions basically affect the microwave μ*(f) spectra and the dynamic magnetization mechanisms of domain wall motion and magnetization rotation. Key parameters for this effect are the reduced magnetocrystalline anisotropy and the created crystal inhomogeneities. Moreover, permittivity is increased with the Y and La content, due to the enhancement of the dielectric orientation polarization. Regarding the electromagnetic wave attenuation, the prepared ferrites exhibit narrowband return losses (RL) by virtue of the cancellation of multiple reflections, when their thickness equals an odd multiple of quarter-wavelength. Interestingly, the zero-reflection conditions are satisfied in the vicinity of the ferromagnetic resonance. As the rare earth doping shifts this mechanism to lower frequencies, loss peaks with RL>46 dB occur at 4.1 GHz and 5 GHz for Y and La-doped Ni-Co-Zn spinels, whereas peaks with RL>40 dB appear at 18 GHz and 19 GHz for Y and La-doped Ni-Co spinels, respectively. The presented experimental findings underline the potential of cubic ferrites with high Co concentration in the suppression of electromagnetic reflections well above the 1 GHz region.
机译:在本文中,我们分析了稀土取代的Ni-Co和Ni-Co-Zn立方铁氧体在微波波段的电磁性能,以及它们作为微波吸收材料的性能。成分为Ni_(0.5)Co_(0.5)Fe_(2-x)R_xO_4和Ni_(0.25)Co_(0.5)Zn_(0.25)Fe_(2-x)R_xO_4(R = Y and La,x = 0,通过固态反应法制备的0.02)的特征在于高达20 GHz的复磁导率μ*(f)和介电常数ε*(f)。稀土替代基本上影响微波μ*(f)谱以及畴壁运动和磁化旋转的动态磁化机理。产生这种效应的关键参数是减小的磁晶各向异性和所产生的晶体不均匀性。此外,由于介电取向极化的增强,介电常数随着Y和La含量的增加而增加。关于电磁波衰减,当铁氧体的厚度等于四分之一波长的奇数倍时,由于消除了多次反射,铁氧体表现出窄带回波损耗(RL)。有趣的是,在铁磁共振附近满足零反射条件。当稀土掺杂将这种机理转移到更低的频率时,Y和La掺杂的Ni-Co-Zn尖晶石在4.1 GHz和5 GHz出现RL> 46 dB的损耗峰,而在18 GHz出现RL> 40 dB的峰Y和La掺杂的Ni-Co尖晶石分别为19 GHz和19 GHz。提出的实验结果强调了高Co浓度的立方铁氧体在抑制1 GHz以上区域的电磁反射方面的潜力。

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