Li4Ti5O12 powders by spray-drying: Influence of the solution concentration and particle size on the electrochemical properties

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Abstract

The lithium battery electrode compound Li4Ti5O12 was synthesized by calcination of precursor powders obtained through spray-drying of solutions prepared with titanium isopropoxide and lithium nitrate. X-ray diffraction and thermal analysis coupled to mass spectrometry show that single phase crystalline Li4Ti5O12 particles can be obtained after calcination at 800 °C for 2 hours. Decreasing the solution concentration leads to smaller particle sizes but also to an unexpected decrease of the electrochemical capacity, probably related to the presence of residual Li2TiO3. On the contrary, the capacity of the Li4Ti5O12 powder prepared with the high concentration solution can be increased from 150 mAh/g to 165 mAh/g (C/4 rate) by grinding. These results highlight the fact that smaller particles do not systematically display better performances for Li+ intercalation/desintercalation and confirm the need for a comprehensive approach including parameters such as crystallinity, phase purity or agglomeration.

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APA

Jamin, C., Jungers, T., Piffet, C., Mahmoud, A., Cloots, R., Vertruyen, B., & Boschini, F. (2018). Li4Ti5O12 powders by spray-drying: Influence of the solution concentration and particle size on the electrochemical properties. In Journal of Physics: Conference Series (Vol. 1081). Institute of Physics Publishing. https://doi.org/10.1088/1742-6596/1081/1/012001

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