共 3 条
Stabilized Performance of LiNi0.90Co0.07Al0.03O2 Cathodes via Zr4+ Doping upon 4.5 V Application due to the Suppression of H2-H3 Phase Transitions
被引:24
|作者:
Che, Wen
[1
]
Wan, Xiaowen
[1
]
Zhang, Dongyun
[1
]
Chang, Chengkang
[1
]
机构:
[1] Shanghai Inst Technol, Sch Mat Sci & Engn, Shanghai 200234, Peoples R China
关键词:
zirconium doping;
high energy density;
capacity retention;
rate capability;
structural stability;
phase transition;
ELECTROCHEMICAL PERFORMANCE;
LITHIUM BATTERIES;
LONG-LIFE;
ION;
LINI0.8CO0.15AL0.05O2;
NANOPARTICLES;
D O I:
10.1021/acssuschemeng.0c08736
中图分类号:
O6 [化学];
学科分类号:
0703 ;
摘要:
The layered structured cathode material LiNi0.90Co0.07Al0.03O2 (NCA) has good prospects for its high energy density for the application in electric vehicles (EVs) but suffers from rapid capacity decay at a high working voltage. In this work, Zr-doped LiNi0.90Co0.07Al0.03O2 (Zr-NCA), with excellent performance at 4.5 V, has been successfully synthesized through a nano-milling-assisted solid-state reaction. The doped material presents an initial capacity of 225.9 mA h.g(-1) and a coulombic efficiency of 89.29% at 4.5 V, and an improved capacity retention by 22.84% after 100 cycles at 0.5 C is also observed. Such a big promotion can be ascribed to the fact that the irreversible phase transition from the second hexagonal to third hexagonal (H2-H3) phase is suppressed by strong Zr-O bonds. The substitution of zirconium ions also expands the thickness of the lithium slab, which thereafter causes a rapid Li-ion migration; thus, the doping of Zr4+ in the NCA cathode also creates a promoted rate behavior with a capacity of 144.7 mA h.g(-1) at 5 C. The method of lattice doping to improve electrochemical performance of NCA at 4.5 V has been displayed, showing high potential for the mass production of cathode materials with a high energy density.
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页码:5536 / 5545
页数:10
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