Electrochemically Engineering a Single-Crystal Nickel-Rich Layered Cathode

被引:10
|
作者
Fang, Susu [1 ]
Zhang, Shu [1 ]
Ni, Lianshan [1 ]
Zou, Guoqiang [1 ]
Hou, Hongshuai [1 ]
Liu, Huiqun [2 ]
Deng, Wentao [1 ]
Ji, Xiaobo [1 ,2 ]
机构
[1] Cent South Univ, Coll Chem & Chem Engn, Changsha, Peoples R China
[2] Cent South Univ, Sch Mat Sci & Engn, Changsha 410083, Peoples R China
基金
中国国家自然科学基金;
关键词
LITHIUM-ION BATTERIES; PERFORMANCE; LINI0.8CO0.2O2; COBALT; OXIDE;
D O I
10.1021/acs.inorgchem.2c04284
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
Nickel-rich layered electrode material has been attracting significant attention owing to its high specific capacity as a cathode for lithium-ion batteries. Generally, the high-nickel ternary precursors obtained by traditional coprecipitation methods are micron-scale. In this work, the submicrometer single-crystal LiNi0.8Co0.1Mn0.1O2 (NCM) cathode is efficiently prepared by electrochemically anodic oxidation followed by a molten-saltassisted reaction without the need of extreme alkaline environments and complex processes. More importantly, when prepared under optimal voltage (10 V), single-crystal NCM exhibits a moderate particle size (similar to 250 nm) and strong metal-oxygen bonds due to reasonable and balanced crystal nucleation/growth rate, which are conducive to greatly enhancing the Li+ diffusion kinetics and structure stability. Given that a good discharge capacity of 205.7 mAh g(-1) at 0.1 C (1 C = 200 mAh g(-1)) and a superior capacity retention of 87.7% after 180 cycles at 1 C are obtained based on the NCM electrode, this strategy is effective and flexible for developing a submicrometer single-crystal nickel-rich layered cathode. Besides, it can be adopted to elevate the performance and utilization of nickel-rich cathode materials.
引用
收藏
页码:4514 / 4524
页数:11
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