Gao Xianggang, Zhou Hao, Li Shihao, Chang ShiLei, Lai Yanqing, Zhang Zhian
School of Metallurgy and Environment, Engineering Research Center of the Ministry of Education for Advanced Battery Materials, Hunan Provincial Key Laboratory of Nonferrous Valued-Added Metallurgy, Central South University, Changsha 410083, PR China.
School of Metallurgy and Environment, Engineering Research Center of the Ministry of Education for Advanced Battery Materials, Hunan Provincial Key Laboratory of Nonferrous Valued-Added Metallurgy, Central South University, Changsha 410083, PR China.
J Colloid Interface Sci. 2022 Jun;615:141-150. doi: 10.1016/j.jcis.2022.01.105. Epub 2022 Jan 29.
Nowadays fast charging has become an important characteristic of lithium-ion batteries (LIBs), so is of great significance to study the fast charging of LIBs. However, previous research of fast charging has focused more on high energy density LIBs, due to the growing demand for electric vehicles. Herein, the fast-charging properties under ambient temperature and high temperature for (60 mAh LiCoO/graphite batteries) micro-LIBs are firstly investigated. The electrochemical test results reveal that this kind of battery possesses 4C fast-charging capability. Further increase in charging rate will accelerate battery capacity decay without reducing charging time. Although high temperature increases the fast-charging capacity and shortens the fast-charging time to 10 min at 6C under 65 °C, increase of side reactions resulted from high temperature also exacerbates the performance of battery. Post-mortem analysis further demonstrates the structural changes of cathode and anode materials, residual lithium deposits, peeling of graphite and the incrassation of the solid electrolyte interphase (SEI), especially under high temperature, which lead to fast -charging performance degradation. This work reveals the possible causes of micro battery performance deterioration during fast charging under ambient and high temperature and provides some reference for designing micro-LIBs with fast -charging properties.
如今,快速充电已成为锂离子电池(LIBs)的一项重要特性,因此研究锂离子电池的快速充电具有重要意义。然而,由于电动汽车需求的不断增长,以往对快速充电的研究更多地集中在高能量密度的锂离子电池上。在此,首次研究了(60 mAh锂钴氧化物/石墨电池)微型锂离子电池在环境温度和高温下的快速充电性能。电化学测试结果表明,这种电池具有4C快速充电能力。进一步提高充电速率会加速电池容量衰减,而不会缩短充电时间。尽管高温提高了快速充电容量,并在65℃下将6C时的快速充电时间缩短至10分钟,但高温导致的副反应增加也会加剧电池性能的恶化。事后分析进一步证明了阴极和阳极材料的结构变化、残余锂沉积物、石墨剥落以及固体电解质界面(SEI)的增厚,特别是在高温下,这些都会导致快速充电性能下降。这项工作揭示了微型电池在环境温度和高温下快速充电过程中性能恶化的可能原因,并为设计具有快速充电性能的微型锂离子电池提供了一些参考。