Evaluation of Charge-Discharge Characteristic of Lithium Cobalt Nickel Manganese Oxide for High-Energy Density Lithium-Ion Batte

P. Salehen, H. Razali, K. Sopian, T. Lee, M. S. Su’ait
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Abstract

The development of suitable cathode materials of lithium ion batteries (LIBs) for energy storage towards improving the performance of LIBs in order to meet the increasing demand globally is one of the challenges. This paper investigates the charge-discharge characteristic for lithium ion batteries developed focusing on cathode materials of LiNiCoMnO2 (NCM) – layered structured material with lithium anode. It also discusses the characteristic features of charge-discharge profile, optimized charge-end voltage as well as discharged limit voltage with a constant current C-rate with 0.1C, 0.3C and 0.5C. The coin cells were fabricated in a glove box full of argon gas using those cathode and anode with separator and organic electrolyte (1M LiPF6, EC: DEC 1:1). The performance of charge-discharge test was conducted with NEWARE tester equipment BTS 3000. This includes obtaining experimental data charge- discharge and power capacity to improve the performance of battery. Thus it is reported that charge-discharge characteristic of LNCM material is important to be analysed for LIBs. The parameter attained is vital and necessary enhancement work for the resolution of optimization BMS simulation.
高能密度锂离子电池用锂钴镍锰氧化物充放电特性评价
开发适合锂离子电池储能的正极材料,以提高锂离子电池的性能,以满足日益增长的全球需求,是锂离子电池面临的挑战之一。本文以LiNiCoMnO2 (NCM)层状结构材料为正极材料,研究了锂离子电池的充放电特性。讨论了在恒流c倍率为0.1C、0.3C和0.5C时的充放电曲线特征、优化的充电端电压以及放电极限电压。硬币电池是在一个充满氩气的手套箱中制造的,使用阴极和阳极的隔板和有机电解质(1M LiPF6, EC: DEC 1:1)。利用NEWARE测试设备BTS 3000进行了充放电性能测试。这包括获得实验数据的充放电和功率容量,以提高电池的性能。因此,LNCM材料的充放电特性是分析锂离子电池的重要内容。所获得的参数是优化BMS仿真分辨率的重要和必要的提高工作。
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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