Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
11026555 | Vacuum | 2018 | 8 Pages |
Abstract
Various LiNi0.08Mn1.92O4 cathode materials were prepared by a solution combustion method at 500â¯Â°C for 1â¯h combined with two-stage calcination at 600, 650, 700, and 750â¯Â°C for 3â¯h, respectively. Systematic characterization and test approaches were carried out to investigate the effect of calcination temperature on the crystal structure, morphology, electrochemical performance and kinetics properties of the as-obtained LiNi0.08Mn1.92O4 samples. As a result, all the LiNi0.08Mn1.92O4 samples show the intrinsic spinel phase with a good crystallinity. The particles size increases with the increased calcination temperature. Especially, the LiNi0.08Mn1.92O4 sample prepared at 700â¯Â°C (LNMO-700) has a great Li+ ion diffusion coefficient and a low apparent activation energy, resulting in an enhanced kinetics. Owing to these merits, the optimized LNMO-700 cathode material exhibits a high initial discharge capacity of 105.0â¯mAh gâ1 and improved retention of 68.6% after 1000 cycles at 1â¯C, whilst delivers a good rate capability of 95.7â¯mAh gâ1 at a high current rate of 5â¯C.
Keywords
Related Topics
Physical Sciences and Engineering
Materials Science
Surfaces, Coatings and Films
Authors
Yao Lu, Xueying Luo, Hongli Bai, Junming Guo, Mingwu Xiang, Changwei Su, Xiaofang Liu, Wei Bai, Rui Wang,