Effect of Calcination Temperature on the Physical Properties of Layered LiNiO2 Prepared by Solid-State Reaction Method

N. Murali, J. Sailaja, Tewodros Aregai, S. Margarette, V. Veeraiah
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Abstract

A layered structure compound LiNiO2 material is synthesized by the solid-state reaction method under air atmosphere in the temperature range from 750 °C to 850 °C using Li2CO3 and NiO as the starting materials for 20 hours. The physical properties of the synthesized powder are investigated by X-ray diffraction (XRD), Field effect scanning electron microscopy (FESEM) and Fourier transform infrared spectroscopic (FT-IR) techniques. The results of XRD patterns possessed the α-NaFeO2 structure of the rhombohedral system (space group, ) with no evidence of any impurities. The morphological features of the powders are characterized by field effect scanning electron microscopy (FESEM). The particles of LiNiO2 powder are generally in the form of a smoothly edged polyhedron and their average grain size is approximately 2 - 3 μm. The FT-IR spectroscopic data of LiNiO2 reveal the structure of the oxide lattice constituted by LiO6 and NiO6 octahedra. In general, from this study, we conclude that the LiNiO2 synthesized by solid state reaction method at different temperatures to increase in the sintering temperature. The lattice constant is increased, while the sintering temperature is increased. The maximum and minimum intensity ratios of XRD spectra shows that the optimum calcination condition is 800°C for 20 h. At 750-850°C, the particle size distribution is in the range of 2 - 3 μm.
煅烧温度对固相反应法制备层状二氧化钛物理性能的影响
以Li2CO3和NiO为原料,在750℃~ 850℃的空气气氛下,以固相反应法制备了层状结构的化合物LiNiO2材料,反应时间为20小时。采用x射线衍射(XRD)、场效应扫描电镜(FESEM)和傅里叶变换红外光谱(FT-IR)技术对合成粉体的物理性质进行了研究。XRD分析结果表明,该材料具有菱形体系(空间群)的α-NaFeO2结构,无杂质存在。用场效应扫描电镜(FESEM)表征了粉末的形态特征。LiNiO2粉末的颗粒一般呈边缘光滑的多面体,平均晶粒尺寸约为2 ~ 3 μm。红外光谱数据揭示了由LiO6和NiO6八面体组成的氧化晶格结构。总的来说,从本研究中我们得出结论,采用固相反应法合成的LiNiO2在不同温度下烧结温度升高。随着烧结温度的升高,晶格常数增大。XRD光谱的最大、最小强度比表明,最佳焙烧条件为800℃,焙烧时间为20 h, 750 ~ 850℃时,颗粒尺寸分布在2 ~ 3 μm范围内。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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