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Influence of electric and magnetic poling on properties of Co/Nb codoped cobalt ferrite

机译:电气磁力对CO / NB编排钴铁氧体性能的影响

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Nb doped CoFe2O4ferrites (Denoted: Co1.2Fe1.7Nb0.1O4) was prepared by conventional solid state reaction method at calcination temperature 1300?C. The tuning of both electrical and magnetic poling on the prepared samples shows suppression of (111) peak as observed in X-ray diffraction study implying that (111) is the easy magnetic axis in polycrystalline cobalt ferrite and it responds to both electric and magnetic field. Furthermore, the strain derivative of 84?×?10?9?Oe?1?at a field of 790?Oe is observed from magnetostriction measurement. Converse magnetoelectric effect was observed on an electrically poled sample where the sample got magnetized upon electrical poling. The value of linear magnetoelectric coefficient obtained was 150?mV/cm.Oe which is unusually high for a single phase material and at room temperature and this may be due to the d0configuration of Nb. The observed linear magnetoelectric coefficient and room temperature PE loop was obtained suggesting that the Co1.2Fe1.7Nb0.1O4material could be useful for magnetoelectric sensor applications.
机译:通过常规固态反应方法在煅烧温度1300℃下制备Nb掺杂CoFe2O 4(表示:Co1.2Fe1.7NB0.1O4)。在制备的样品上的电和磁性抛光的调谐显示抑制(111)峰,如在X射线衍射研究中观察到的,这意味着(111)是多晶钴铁氧体中的易磁轴,它响应电磁场和磁场。此外,应变衍生物为84?×10?9?OE?1?从磁致伸缩测量观察到790°的字段处。在电动样品上观察到逆磁电效应,其中样品在电动抛光时被磁化。获得的线性磁电系数的值为150μm≤mO2 mV / cm.oe,其对于单相材料具有异常高,并且在室温下,这可能是由于Nb的D0配置。获得了观察到的线性磁电系数和室温PE环路,表明CO1.2FE1.7nb0.1O4材料可用于磁电传感器应用。

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