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Monitoring the Bi/Fe ratio at different pH values in BiFeO3 nanoparticles derived by normal and reverse chemical co-precipitation: A comparative study on the purity, microstructure and magnetic properties

机译:通过正常和逆向化学共沉淀得出的BiFeO3纳米颗粒中不同pH值的BI / Fe比率监测Bi / Fe比率:纯度,微观结构和磁性的比较研究

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摘要

Co-precipitation method was utilized for multiferroic BiFeO3(BFO) nanoparticles synthesis. The influence of different pH values on BFO powders properties was investigated. Thermogravimetric-differential thermal analysis (TG-DTA) technique indicated that optimal calcination and Curie temperatures are 550 degrees C and 818.7 degrees C. The precursor samples atomic absorption spectroscopy (AAS) results illustrate Bi and Fe atoms non-homogeneous distribution in normal co-precipitated samples. The phase formation and existence of transient phases like Bi25FeO39 and Bi2Fe4O9 were studied by X-ray diffractometry (XRD). Nanopowders morphological features were characterized using field emission scanning electron microscopy (FESEM). Presence of absorption bands at 400-3600 cm(-1) was investigated by Fourier transformed infrared (FTIR) spectroscopy; and magnetic properties of synthesized powders were measured using vibration sample magnetometery (VSM). Results revealed that BFO powders have an R3c crystal structure. FESEM micrographs showed powders with pseudo-cubic shape and average particles size of 41.3 nm and 70.4 nm for normally and reversely synthesized powders. Magnetic hysteresis loops demonstrated a weak ferromagnetic behavior of the samples at room temperature. Due to the fact that the as-prepared powders particles size was lower than that of the spiral spin cycloid (62 nm) and that the nanoparticles surface-to-volume ratio was high and, in turn, led to more uncompensated spins, the weak ferromagnetic behavior was observed. Besides, the pH value decrement improved magnetization from 0.11 emu/g for pH = 10.5-0.2 emu/g for pH = 8.5.
机译:共析出方法用于多二二种BIFEO3(BFO)纳米颗粒合成。研究了不同pH值对BFO粉末性质的影响。热重分差分热分析(TG-DTA)技术表明,最佳煅烧和居里温度为550℃和818.7℃。前体样品原子吸收光谱(AAS)结果说明BI和Fe原子在正常的共同中的非均匀分布沉淀的样品。通过X射线衍射法(XRD)研究了Bi25FeO39和Bi2Fe 4 O9等瞬时相的相形成和存在。使用现场发射扫描电子显微镜(FESEM)表征纳米孔的形态特征。通过傅里叶变换的红外(FTIR)光谱研究了400-3600cm(-1)的吸收带的存在;使用振动样品磁体(VSM)测量合成粉末的磁性。结果表明,BFO粉末具有R3C晶体结构。 FeSEM显微照片显示出伪立方形状和平均颗粒尺寸为41.3nm和70.4nm的平均颗粒的粉末,用于通常和反向合成的粉末。磁滞回路在室温下表现出样品的弱铁磁性行为。由于AS制备的粉末颗粒尺寸低于螺旋旋转环烷醇(62nm)并且纳米颗粒表面对体积比高,而且反过来导致更加未补偿的旋转,弱观察到铁磁性行为。此外,pH值减量从0.11 emu / g改善磁化为pH = 10.5-0.2 emu / g的pH = 8.5。

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