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Influence of mechanical milling and thermal annealing on electrical and magnetic properties of nanostructured Ni-Zn and cobalt ferrites

机译:机械研磨和热退火对纳米结构Ni-Zn和钴铁氧体电和磁性能的影响

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The present article reports some of the interesting and important electrical and magnetic properties of nanostructured spinel ferrites such as Ni_(0.5)Zn_(0.5)Fe_2O_4 and CoFe_2O_4. In the case of Ni_(0.5)Zn_(0.5)Fe_2O_4, d.c. electrical conductivity increases upon milling, and it is attributed to oxygen vacancies created by high energy mechanical milling. The real part of dielectric constant (epsilon') for the milled sample is found to be about an order of magnitude smaller than that of the bulk nickel zinc ferrite. The increase in Neel temperature from 538 K in the bulk state to 611 K on the reduction of grain size upon milling has been explained based on the change in the cation distribution. The dielectric constant is smaller by an order of magnitude and the dielectric loss is three orders of magnitude smaller for the milled sample compared to that of the bulk. In the case of cobalt ferrite, the observed decrease in conductivity, when the grain size is increased from 8-92 nm upon thermal annealing is clearly due to the predominant effect of migration of some of the Fe~(3+) ions from octahedral to tetra-hedral sites, as is evident from in-field Mossbauer and EXAFS measurements. The dielectric loss (tan delta) is an order of magnitude smaller for the nano sized particles compared to that of the bulk counterpart.
机译:本文报道了纳米结构的尖晶石铁氧体,例如Ni_(0.5)Zn_(0.5)Fe_2O_4和CoFe_2O_4的一些有趣且重要的电磁特性。在Ni_(0.5)Zn_(0.5)Fe_2O_4的情况下,d.c。研磨后,电导率增加,这归因于高能机械研磨产生的氧空位。发现研磨后的样品的介电常数的实部(ε)比块状镍锌铁氧体的介电常数的实部小约一个数量级。基于阳离子分布的变化,已经解释了随着碾磨时晶粒尺寸的减小,Neel温度从本体态的538 K增加到611K。与研磨后的样品相比,研磨后的样品的介电常数要小一个数量级,介电损耗要小三个数量级。在钴铁氧体的情况下,观察到的电导率降低,当热退火后晶粒尺寸从8-92 nm增加时,显然是由于某些Fe〜(3+)离子从八面体迁移到四面体的主要作用。从野外Mossbauer和EXAFS测量中可以明显看出四面体位置。与整体对应物相比,纳米尺寸颗粒的介电损耗(tanδ)小一个数量级。

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