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Effect of pH on Structural, Magnetic and FMR Properties of Hydrothermally Prepared Nano Ni Ferrite

机译:pH值对水热制备纳米镍铁氧体结构,磁性和FMR性能的影响

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Nano nickel ferrite particles were prepared at pH values 1.5, 4, 7, 10, 13 by a hydrothermal method using metal chlorides and NaOH as an oxidant and solution basicity controller. There is a phase transition from hematite to spinel ferrite that begins when the pH reaches 4. The lowest crystallite size (4 nm) was associated with a highest lattice constant (8.345 ?), at pH=4. Whereas maximum crystallite size 64.5 nm corresponds lattice constant of 8.298 ? at pH=10. The highest magnetization (48 emu/g) value was achieved for the sample prepared at pH=7, which at the same time has a lower coercivity. The samples synthesized at pH ≥4 show superparamagnetic behavior owing to its low particle size and to zero field cooling and field cooling measurements. The ferromagnetic resonance (FMR) cavity tests analysis show that the broadened linewidth (770 Oe) and high imaginary permeability or high microwave absorption which is linked to high magnetization and low coercivity of superparamagnetic particles and their aggregation. There was a shift in the resonance field due to internal fields and cation distribution.
机译:通过使用金属氯化物和NaOH作为氧化剂和溶液碱性控制器的水热法,在pH值为1.5、4、7、10、13的条件下制备纳米镍铁氧体颗粒。从赤铁矿到尖晶石铁素体的相变始于pH达到4时。在pH = 4时,最小的微晶尺寸(4 nm)与最高的晶格常数(8.345?)相关。而最大晶粒尺寸64.5 nm对应于8.298?的晶格常数。在pH = 10。在pH = 7时制备的样品具有最高的磁化强度(48 emu / g),同时矫顽力较低。 pH≥4时合成的样品由于其粒径小以及零场冷却和场冷却测量而显示出超顺磁性能。铁磁共振(FMR)腔测试分析表明,线宽(770 Oe)变宽,高虚磁导率或高微波吸收率与超顺磁性粒子的高磁化和低矫顽力及其聚集有关。由于内部电场和阳离子分布,共振场发生了变化。

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