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Structural, electrical and magnetic characterizations of Ni–Cu–Zn ferrite synthesized by citrate precursor method

机译:柠檬酸盐前驱体法合成Ni-Cu-Zn铁氧体的结构,电学和磁学表征

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摘要

Fine powders of NiCuZn ferrite with composition Ni(0.7x)CuxZn0.3Fe2O4 (where x 0, 0.2, 0.4 and 0.6) were prepared by the citrate precursor method. X-ray diffraction measurements confirm the formation of single-phase cubic spinel structure. The grain size was estimated by SEM micrograph which increases with Cu content. Dielectric constant (e ′ ) and loss tangent (tan d) were measured as a function of frequency. The e′ and tan d show a decreasing trend with increase of frequency for all the samples. The DC resistivity was measured as a function of temperature. The temperature-dependent DC resistivity measurements show that the room-temperature DC resistivity of NiCuZn ferrite with x 0.2 is of the order of 109Ocm. The AC conductivity (sAC) was studied as a function of frequency. The hysteresis data indicate that the maximum saturation magnetization of 38.66 emu/g is obtained for the composition with x 0.2.
机译:通过柠檬酸盐前体法制备了组成为Ni(0.7x)CuxZn0.3Fe2O4(其中x 0、0.2、0.4和0.6)的NiCuZn铁氧体细粉。 X射线衍射测量证实了单相立方尖晶石结构的形成。通过SEM显微照片估计了晶粒尺寸,其随着Cu含量的增加而增加。测量介电常数(e')和损耗角正切(tan d)作为频率的函数。对于所有样品,e'和tan d均显示随频率增加而降低的趋势。测量直流电阻率随温度的变化。与温度有关的直流电阻率测量结果表明,x 0.2的NiCuZn铁氧体的室温直流电阻率约为109Ocm。研究了交流电导率(sAC)与频率的关系。磁滞数据表明,对于x为0.2的组合物,可获得38.66 emu / g的最大饱和磁化强度。

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