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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >High-Temperature Thermal Cycling Effect on the Irreversible Responses of Lattice Structure, Magnetic Properties, and Electrical Conductivity in Co2.75Fe0.25O4+delta Spinel Oxide
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High-Temperature Thermal Cycling Effect on the Irreversible Responses of Lattice Structure, Magnetic Properties, and Electrical Conductivity in Co2.75Fe0.25O4+delta Spinel Oxide

机译:CO2.75FE0.25O4 + Delta尖晶石氧化物中晶格结构,磁性和导电性的不可逆响应的高温热循环效应

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We report high-temperature synchrotron X-ray diffraction (SXRD), magnetization, and current-voltage (I-V) characteristics for the samples of Co2.75Fe0.25O4 ferrite. The material was prepared by chemical reaction of the Fe and Co nitrate solutions at pH similar to 11 and subsequent thermal annealing. Physical properties of the samples were measured by cycling the temperature from 300 K to high temperature (warming mode) and returning back to 300 K (cooling mode). The lattice structure showed sensitivity to high measurement temperatures. Magnetization curves showed a defect-induced ferromagnetic phase at higher temperatures and superparamagnetic blocking of the ferrimagnetic particles near to 300 K or below. Electrical conductivity exhibited a thermal hysteresis loop at higher measurement temperatures. The samples exhibited new form (not studied so far) of surface magnetism in Co rich spinel oxides and irreversibility phenomena in the lattice structure, magnetization, and conductivity on cycling the measurement temperatures.
机译:我们报告了CO2.75FE0.25O4铁素体样品的高温同步X射线衍射(SXRD),磁化和电流 - 电压(I-V)特性。通过在类似于11和随后的热退火的pH下通过Fe和Co硝酸溶液的化学反应制备该材料。通过将温度从300k循环到高温(加热模式)并返回到300k(冷却模式)来测量样品的物理性质。晶格结构显示对高测量温度的敏感性。磁化曲线在较高温度下呈现缺陷诱导的铁磁相,并且靠近300k或更低的亚铁磁性颗粒的超顺磁性阻断。电导率在较高测量温度下表现出热滞后回路。样品在Co富含尖晶石氧化物中的表面磁性和晶格结构,磁化和循环测量温度的电导率下表现出在CO富尖晶石氧化物和不可逆转现象的新形式(未学解)。

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