Savina Aleksandra A, Abakumov Artem M
Center for Energy Science and Technology, Skolkovo Institute of Science and Technology, Bolshoy Boulevard 30, bld. 1, 121205, Moscow, Russia.
Heliyon. 2023 Nov 1;9(12):e21881. doi: 10.1016/j.heliyon.2023.e21881. eCollection 2023 Dec.
The layered oxide LiNiMnCoO (NMC811, NCM811) is of utmost technological importance as a positive electrode (cathode) material for the forthcoming generation of Li-ion batteries. In this contribution, we have collected 548 research articles comprising >950 records on the electrochemical properties of NMC811 as a cathode material in half-cells with metallic Li counter electrode. The analysis of distribution histograms provided statistically-relevant values of such key characteristics of NMC811 as the first cycle discharge capacity and Coulombic efficiency, discharge capacities at different upper cut-off voltages, capacity fade and capacity retention at the 0.1C-5C current densities. We derived equations describing the relationships between discharge capacity and upper cut-off voltage, Ni content in the LiNiMnCoO compositions in vicinity of NMC811, antisite disorder, and the C-rate. Additionally, the distribution histograms were used for a qualitative comparison between various groups of NMC811 materials, such as benchmarks in various optimizations vs obtained in course of synthesis development, lab-made vs commercial, polycrystalline vs single-crystal. The results of this analysis provide justified values to be used as benchmarks in further works related to optimizing and improving NMC811 and related materials, eliminating random picking up from a huge pool of published data.
层状氧化物LiNiMnCoO(NMC811、NCM811)作为下一代锂离子电池的正极(阴极)材料具有极其重要的技术意义。在本论文中,我们收集了548篇研究文章,其中包含950多条关于NMC811作为具有金属锂对电极的半电池中阴极材料的电化学性能记录。通过对分布直方图的分析,我们得出了NMC811的一些关键特性的统计相关值,如首次循环放电容量和库仑效率、不同上截止电压下的放电容量、在0.1C - 5C电流密度下的容量衰减和容量保持率。我们推导了描述放电容量与上截止电压、NMC811附近LiNiMnCoO组成中的Ni含量、反位无序以及C倍率之间关系的方程。此外,分布直方图还用于对不同组的NMC811材料进行定性比较,例如各种优化中的基准材料与合成开发过程中获得的材料、实验室制备的材料与商业材料、多晶材料与单晶材料。该分析结果提供了合理的值,可作为进一步优化和改进NMC811及相关材料的基准,避免从大量已发表数据中随机选取。