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MAGNETIC PROPERTIES OF NANOSIZED FERRITE POWDERS SYNTHESIZED BY MICROWAVE-HYDROTHERMAL METHOD

机译:微波水热法合成纳米铁氧体粉末的磁性性能

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Nanosized powders of Fe_3O_4 and MgFe_2O_4 are synthesized by microwave-hydrothermal (MH) method. The ferrite powders thus obtained are characterized by powder X-ray diffraction, Moessbauer spectroscopy, scanning and transmission electron microscopies, vibrating sample magnetometer and AC magnetic susceptibility studies. Stoichiometric, nanosized (~34 nm) Fe_3O_4 particles, having cubic symmetry with a_0 ≈ 8.39 A, are obtained when molar ratio of Fe/NaOH used for the synthesis is 0.133. On the other hand, non-stoichiometric Fe_3O_4 is obtained when Fe/NaOH molar ratio is increased to 0.4. Though the powder XRD patterns of both Stoichiometric and non-stoichiometric Fe_3O_4 are identical, Mossbauer spectroscopic studies showed different features in terms of asymmetry, intensity, isomer shift, etc. Saturation magnetization, M_s = 70 emu/g and coercivity, H_c = 178 Oe, at room temperature, are obtained for Stoichiometric Fe_3O_4 powders. In the case of MgFe_2O_4, spherical, nanosized (~3 nm) powders with cubic symmetry (a_0 ≈ 8.30 A) and having very narrow size distribution are obtained under the MH conditions. The temperature and field dependent magnetic measurements on MgFe_2O_4 powders confirmed the existence of superparamagnetic state in this material with a superparamagnetic blocking temperature of 38 K below which typical magnetic hysteresis behaviour is observed.
机译:通过微波 - 水热(MH)方法合成Fe_3O_4和MgFe_2O_4的纳米化粉末。由此获得的铁氧体粉末的特征在于粉末X射线衍射,Moessbauer光谱,扫描和透射电子显微镜,振动样品磁力计和交流磁性敏感性研究。当用于合成的Fe / NaOH的摩尔比为0.133时,可以获得具有与A_0≈1.39a的立方对称的组化学计量的纳米化(〜34nm)Fe_3O_4颗粒。另一方面,当Fe / NaOH摩尔比增加到0.4时,获得非化学计量Fe_3O_4。虽然化学计量和非化学计量Fe_3O_4的粉末XRD图案是相同的,但莫斯巴尔光谱研究表明,在不对称,强度,异构体偏移等方面表现出不同的特征。饱和磁化强度,M_S = 70 emu / g和矫顽力,H_C = 178 OE在室温下,用于化学计量Fe_3O_4粉末。在MgFe_2O_4的情况下,在MH条件下获得具有立方对称性的球形,纳米化(〜3nm)粉末并具有非常窄的尺寸分布。 MgFe_2O_4粉末的温度和场依赖性磁测量证实了在该材料中的超顺磁状态的存在,其超顺磁阻断温度为38k,下调典型的磁滞行为。

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