Lakhdar Yazid, Geary Harry, Houck Maurits, Gastol Dominika, Groombridge Alexander S, Slater Peter R, Kendrick Emma
School of Metallurgy and Materials, University of Birmingham, Edgbaston, Birmingham B15 2TT, U.K.
Echion Technologies Ltd., 9 Cambridge South, West Way, Sawston, Cambridge CB22 3FG, U.K.
ACS Appl Energy Mater. 2022 Sep 26;5(9):11229-11240. doi: 10.1021/acsaem.2c01814. Epub 2022 Aug 12.
Niobium oxides are an emerging class of anode materials for use in high-power lithium-ion batteries. Galvanostatic cycling and electrochemical impedance spectroscopy (EIS) were used in this study to investigate the influence of electrode porosity, electrode mass ratio, and cycling rate on the capacity, cycle life, and ionic conductivity of Li-ion battery cells based on a modified micron-sized MoNbO (MNO) anode powder. Both electrode and cell designs were found to have a significant impact on the rate performance and cycle life of Li-ion half- and full cells. A higher specific capacity, improved rate performance, and a longer cycle life were obtained in both anode and cathode half-cells by lowering the electrode porosity through calendaring. MNO/Li half-coin cells displayed excellent cyclability, reaching 80% state of health (SOH) after 600 cycles at C/2 charge and 1C discharge. MNO/NMC622 full-coin cells displayed a high capacity of 179 mAh g at 100 mA g (0.5 mA cm) and excellent cyclability at 25 °C, reaching 70% SOH after over 1000 cycles at 1 mA cm after optimizing their N/P ratio. Excellent cyclability was obtained at both 1C/1C and fast 2C/2C cycling, reaching 80% SOH after 700 and 470 cycles, respectively. Full-coin and small pouch cells had outstanding rate performance as they could be charged from 0 to 84% capacity in less than 5 min at 10 mA cm and to 70% SOC in 120 s at 20 mA cm.
氧化铌是一类新兴的用于高功率锂离子电池的负极材料。本研究采用恒电流循环和电化学阻抗谱(EIS)来研究电极孔隙率、电极质量比和循环速率对基于改性微米级MoNbO(MNO)负极粉末的锂离子电池的容量、循环寿命和离子电导率的影响。研究发现,电极和电池设计对锂离子半电池和全电池的倍率性能和循环寿命都有显著影响。通过压延降低电极孔隙率,在阳极和阴极半电池中均获得了更高的比容量、改善的倍率性能和更长的循环寿命。MNO/Li半硬币电池表现出优异的循环性能,在C/2充电和1C放电条件下循环600次后,健康状态(SOH)达到80%。MNO/NMC622全硬币电池在100 mA g(0.5 mA cm)下显示出179 mAh g的高容量,在25℃下具有优异的循环性能,在优化其N/P比后,在1 mA cm下循环超过1000次后,SOH达到70%。在1C/1C和快速2C/2C循环条件下均获得了优异的循环性能,分别在700次和470次循环后SOH达到80%。全硬币和小型软包电池具有出色的倍率性能,因为它们可以在10 mA cm下不到5分钟内从0充电至84%容量,在20 mA cm下120秒内充电至70% SOC。