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AC susceptibility and hyperfine interactions of vanadium substituted barium nanohexaferrites

机译:钒取代钡纳米己发蛋的AC易感性和高血清相互作用

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Vanadium ions substituted BaFe12O19 nanohexaferrites, BaFe12-xVxO19 (0.0 = x = 0.1), were produced through the sol-gel auto-combustion route. The structure, morphology and the elemental compositions of various products were examined using X-ray powder diffraction, scanning electron microscopy coupled with EDX and EDS elemental mapping. These techniques confirmed the formation of the desired Ba-nanohexaferrite phases. The crystallites size was found to be 55-58 nm range for all products. The magnetic properties of BaFe12-xVxO19 nanohexaferrites were investigated by Mossbauer spectroscopy, ZFC-FC magnetizations and AC susceptibility. The evolutions in the values of hyperfine magnetic field, isomer shift, quadrupole splitting, and line width were deduced via Mossbauer analysis. The experiments of ZFC and FC magnetizations indicated that no blocking temperature is observed in the temperature interval 2-400 K, which signals the typical ferromagnetic (FM) behavior for the produced nanohexaferrites. A super-spin glass like behavior is noticed at lower temperatures. The experiments AC susceptibility confirmed that the strength of magnetic interactions is enhanced for lower content of V3+ (x = 0.02). For higher amount of V3+, the magnetic interactions are weakened. The obtained results are mainly accredited to the substitutions of Fe3+ ions by V3+ ions.
机译:钒离子取代的Bafe12O19纳米脂蛋白,通过溶胶 - 凝胶自动燃烧途径制备Bafe12-XVXO19(0.0& = 0.1)。使用X射线粉末衍射检查各种产物的结构,形态和元素组成,扫描电子显微镜与EDX和EDS元素映射耦合。这些技术证实了所需的Ba-纳米己发蛋相的形成。所有产品的微晶尺寸都被发现为55-58nm范围。通过Mossbauer光谱,ZFC-Fc磁化和AC敏感研究了Bafe12-XVXO19纳米己发蛋蛋白的磁性。通过Mossbauer分析推导出高血清磁场值,异构体偏移,四极杆分裂和线宽的进化。 ZFC和Fc磁化的实验表明,在温度间隔2-400k中没有观察到封闭温度,其向产生的纳米脂蛋白的典型铁磁性(FM)行为表示信号。在较低温度下,注意到类似的超旋转玻璃。实验AC易感性证实,磁性相互作用的强度增强了较低含量的V3 +(x = 0.02)。对于较高量的V3 +,磁性相互作用削弱。得到的结果主要通过V3 +离子对Fe3 +离子的取代进行认可。

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