锰
钴
镍
热液循环
阴极
材料科学
冶金
化学工程
化学
工程类
物理化学
作者
Wenrui Sun,Genwen Lin,Xueqian Zhang,Hongming Jin,Mingyuan Zhu,Ying Li
标识
DOI:10.1002/cnma.202500015
摘要
High magnetic field is a unique technique for material preparation that is commonly applied in magnetic materials but seldom in electrode materials. In this study, a pulsed high‐intensity magnetic field is applied in the hydrothermal synthesis of the NCM523 precursor, specifically during the formation and growth of NCM crystal particles. As a result, NCM523 had a better layered structure, alleviating the Li + /Ni 2+ mixed arrangement phenomenon, and a faster Li + diffusion rate. In addition, when the pulsed high magnetic field is applied, the Ni 2+ content decreased, and the Mn 4+ content increased, enhancing the electrochemical properties. In the high cutoff voltage range of 3–4.5 V and setting 1 C = 180 mA g −1 , the initial specific discharge capacity of NCM523 is 190.4 mAh g −1 , which is 12.1 mAh g −1 higher than that prepared without the magnetic field. After 200 cycles, the specific discharge capacity and capacity retention rate increased by 24.4 mAh g −1 and 8.5%, respectively, compared with NCM523 prepared in the absence of the magnetic field.
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