Characterization and Performance of Graphite–Lithium Titanium Oxide Composites Used as Anodes in Lithium-Ion Batteries
摘要
Lithium titanium oxide used as the anode for lithium-ion batteries has some challenges such as its high electrical resistance and low lithium diffusion coefficient. To this end, graphite–lithium titanium oxide composites were prepared and the effect of synthesis parameters on half-cell and full-cell performance with NMC532 cathode was investigated. The best synthesis parameters included 5 h of milling, a heat treatment temperature of 850 °C, and graphite contents of 70 or 90 W/W%, resulting in full-cell capacity of 124.73 mA h g−1 and initial Coulombic efficiency (ICE) of 97.63 for 90% graphite content and the capacity of 116.14 mA h g−1 and ICE of 95.62 for 70% graphite content. The hall-cell capacity also improved to 311.23 Ma h g−1 and 290.51 mA h g−1 for 90% and 70% graphite content, respectively. The composites also improved the lithium diffusion coefficient, achieving a diffusion coefficient of