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Synthesis and characterization of cobalt ferrite nanoparticles prepared by the glycine-nitrate process

机译:用甘氨酸 - 硝酸盐法制备的钴铁氧体纳米粒子的合成与表征

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In this research, microstructural evolution and magnetic properties of cobalt ferrite spinel (CoFe2O4) were studied. The ferrite was prepared by the glycine-nitrate process (GNP) followed by calcination process, and subsequent high energy mechanical milling. The samples were characterized by X-ray diffraction (XRD), field emission scanning electron microscopy (FESEM), and vibration sample magnetometery (VSM) methods. The results showed that the desired high purity spinel phase was formed through a complete combustion reaction using the G/N ratio of 1.48. The as-synthesized powder revealed the coercivity and saturation magnetization of 900 Oe and 62.83 emu/g, respectively. The CoFe2O4 phase was stable after calcination at 500 degrees C for 2 h under argon atmosphere and subsequent milling processes for 2 and 4 h. The highest coercivity value was obtained for the calcined sample (975 Oe), whose average particle size exhibited noticeable conformity with the single magnetic domain size of CoFe2O4 (similar to 40 nm). For the 2 h-milled and 4 h-milled samples, the average particle size was below the single magnetic domain size, causing a significant reduction in coercivity values (820 and 770 Oe, respectively). The saturation magnetization was increased negligibly after the calcination process (63.22 emu/g), while it was raised to 71.47 and 73.98 emu/g after 2 and 4 h milling, probably due to the cationic redistribution during milling.
机译:在该研究中,研究了钴铁氧体尖晶石(CoFe2O4)的微观结构演化和磁性。通过甘氨酸 - 硝酸法(GNP)制备铁素体,然后是煅烧过程,随后的高能量机械研磨。样品的特征在于X射线衍射(XRD),场发射扫描电子显微镜(FESEM)和振动样品磁力(VSM)方法。结果表明,通过使用1.48的G / N比的完全燃烧反应形成所需的高纯度尖晶石相。优选粉末揭示了900°OE和62.83 emu / g的矫顽力和饱和磁化强度。在氩气氛下在500℃下煅烧2小时后,COFE 2 O 4相稳定,随后的研磨方法2和4小时。获得最高的矫顽力值对于煅烧的样品(975 OE),其平均粒度表现出明显的符合COFE 2 O 4的单一磁畴(类似于40nm)。对于2个H型研磨和4个H型研磨的样品,平均粒度低于单一磁畴尺寸,导致矫顽力值显着降低(分别为820和770 OE)。在煅烧过程(63.22 emu / g)之后,饱和磁化长度易于增加,而在2和4 H铣削后,将其升至71.47和73.98 emu / g,可能是由于铣削期间的阳离子再分配。

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