溶胶-凝胶法制备锂离子电池负极材料Li4Ti5O12及其表征

S. Priyono, I. Nuroniah, A. Subhan, E. Sanjaya, B. Prihandoko
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引用次数: 0

摘要

溶胶-凝胶法制备锂离子电池负极材料Li4Ti5O12及其表征。采用溶胶-凝胶法制备了阳极材料Li4Ti5O12。在500℃、600℃、700℃和800℃的烧结温度下进行合成。进行的表征包括测试热分析以确定烧结的最佳温度,XRD (x射线衍射)以找出Li4Ti5O12的相形成,扫描电子显微镜(SEM)分析形成的形貌,测试循环伏安法,进行充放电和电化学阻抗谱(EIS)以找出电化学性能。热表征和XRD分析结果表明,合成的最佳温度为800℃,杂质含量较低。SEM表征结果表明,样品形貌不均匀,颗粒呈团聚状。所得到的电化学性能随着烧结温度的升高而增加,包括伏安图、扩散系数值、电导率和充放电容量。其中,在800℃下烧结的LTO具有良好的电化学性能,其伏安图清晰且良好,锂离子的扩散系数为1.58 × 10-9 cm2s-1,电导率为0.6282 S/cm,放电容量为78,07 mAh/g。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SYNTHESIS AND CHARACTERIZATION OF Li4Ti5O12 WITH SOL GEL METHOD AS A LITHIUM ION-BATTERY ANODE MATERIAL
SYNTHESIS AND CHARACTERIZATION OF Li4Ti5O12 WITH SOL GEL METHOD AS A LITHIUM ION-BATTERY ANODE MATERIAL. Synthesis of anode Li4Ti5O12 material has been carried out using the sol gel method. The synthesis is carried out with variations in sintering temperatures at 500 oC, 600 oC, 700 oC dan 800 oC. Characterization carried out includes testing thermal analysis to determine the optimum temperature for sintering, XRD (X-ray Diffraction) to find out the phase formation of Li4Ti5O12, Scanning electron microscope (SEM) to analyse the morphology formed, testing Cyclic voltammetry, charge-discharge and Electrochemical Impedance Spectroscopy (EIS) is carried out to find out the elec- trochemical performance. From the results of characterization of thermal and XRD analyses, the optimum temperature for synthesis is 800oC with small impurity content. The results of SEM characterization show that the morphology of the sample is not homogeneous, and the particles are agglomerated. The resulting electrochemical performance increases along with the increase in temperature for sintering, including voltammogram graphs, diffusion coefficient values, electrical conductivity and charge-discharge capacity. Of all the samples, the LTO sintered at 800oC shows good electrochemical performance with a sharp and good voltammogram graph, diffusion coefficient value of lithium ion is 1.58 × 10-9 cm2s-1, electrical conductivity of 0.6282 S/cm and the discharge capacity given is 78,07 mAh/g.
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