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Electrical transport properties of cadmium substituted copper ferrites

机译:镉取代的铜铁氧体的电传输性质

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Electrical transport properties such as electrical conductivity (σ ) and thermoelectric power (S) of cadmium substituted copper ferrites, forming the chemical formula Cu_1-xCd_xFe_2O_4, where x=0.2, 0.4, 0.6, 0.8 and 1.0 have been investigated from room temperature to well beyond the Curie temperature. Plots f log(σT) vs. 10~3/T are linear and show a transition near the Curie temperature except in the case of cadmium ferrite. Based on the Seebeck coefficient (S), the ferrites under investigation have been classified as n-type semiconductors. The values of charge carrier concentration and mobility have been computed from experimental values of Seebeck coefficient and electrical conductivity. The activation energy in the ferrimagnetic region is in general less than that in the paramagnetic region. An attempt is made to explain the conduction mechanism in these ferrites. The properties of cadmium substituted copper ferrites have been correlated with these of zinc substituted copper ferrites. The properties of cadmium substituted copper ferrites have been correlated with these of zinc substituted copper ferrites, cadmium and zinc being two non-magnetic divalent ions occupying essentially tetrahedral A sites when substituted in ferrites.
机译:研究了从室温到阱中形成化学式Cu_1-xCd_xFe_2O_4的化学式为Cu_1-xCd_xFe_2O_4的镉取代的铜铁氧体的电传输特性,例如电导率(σ)和热电功率(S)。超过居里温度。 f log(σT)vs. 10〜3 / T的曲线是线性的,并且在居里温度附近显示出过渡,除了镉铁氧体的情况。根据塞贝克系数(S),所研究的铁氧体已被分类为n型半导体。电荷载流子浓度和迁移率的值是根据塞贝克系数和电导率的实验值计算得出的。亚铁磁性区域中的活化能通常小于顺磁性区域中的活化能。试图解释这些铁氧体中的导电机理。镉取代的铜铁氧体的性能已经与锌取代的铜铁氧体的性能相关。镉取代的铜铁氧体的性质已经与锌取代的铜铁氧体的性质相关联,镉和锌是两个非磁性的二价离子,当被铁氧体取代时,它们基本上占据了四面体A的位置。

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