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Grain size effect on the Neel temperature and magnetic properties of nanocrystalline $NiFe{_2}O{_4}$ spinel

机译:晶粒尺寸对纳米晶$ NiFe {_2} O {_4} $尖晶石的Neel温度和磁性的影响

摘要

Nanocrystalline NiFe2O4 spinel ferrites with various grain sizes have been synthesized by ball milling the bulk NiFe2O4. The average grain sizes were estimated from the X-ray line broadening of the (3 1 1) reflection. The Neel temperatures of NiFe2O4 for various grain sizes were determined by magneto thermogravimetric method. The magnetic behaviour has been explained by combining the effects of changes in cation distribution on milling and finite size scaling. The shift in B-H loops has been correlated to the surface spin effects. The high coercivities observed here may be due to high anisotropies of the milled samples. The Hopkinson peak observed just below the Neel temperature has been explained by the mathematical formalism given by the Stoner Wohlfarth model.
机译:通过球磨块状NiFe2O4合成了具有各种晶粒尺寸的纳米晶NiFe2O4尖晶石铁氧体。从(3 1 1)反射的X射线线展宽估计平均晶粒尺寸。通过磁热重法测定了各种粒度的NiFe2O4的Neel温度。磁行为已通过结合阳离子分布变化对铣削和有限尺寸缩放的影响进行了解释。 B-H环中的偏移已与表面自旋效应相关。此处观察到的高矫顽力可能是由于研磨样品的高各向异性。斯托纳·沃尔法斯(Stoner Wohlfarth)模型给出的数学形式主义解释了恰好在尼尔温度以下观察到的霍普金森峰。

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