Cu/Mg substitution enables O3-type NaNi0.4Fe0.2Mn0.4O2 cathode material with simpler phase transition process for sodium-ion batteries

被引:0
|
作者
Luo, Xuan [1 ]
Wang, Luhan [1 ]
Tian, Meng [1 ]
Tian, Yi [1 ]
Zhang, Xiao [2 ]
Zhou, Shijie [1 ]
Xie, Jun [1 ]
Hu, Linlin [1 ]
机构
[1] Western Met Mat Co Ltd, Xian 710016, Peoples R China
[2] Harbin Inst Technol, MIIT key Lab Crit Mat Technol New Energy Convers &, Harbin 150080, Peoples R China
关键词
Sodium-ion batteries; Co-doping; Cathode; Phase transition; STABILITY; NI2+/NI3+;
D O I
10.1016/j.jallcom.2025.178713
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
O3-type layered oxides are considered ideal cathode materials for sodium-ion batteries (SIBs) owing to their high theoretical capacities, but these materials undergo complex phase transitions during the Na+ extraction and insertion, resulting in serious structural degradation and reduced cycling stability. Herein, we employ "Cu/Mg co-doping strategy" to synthesize a stable O3-type layered transition metal oxide NaNi 0.25- Cu 0.1 Mg 0.05 Fe 0.2 Mn 0.4 O 2 (NaNCMFMO) with excellent structural reversibility. The resulting NaNCMFMO achieves reversible specific capacity of 123 mAh g- 1 at 0.1 C and remarkable improvement in capacity retention of 79.4 % over 300 cycles at 1.0 C, compared to the pristine NaNi 0.4 Fe 0.2 Mn 0.4 O 2 cathode (42.1 % retention after 300 cycles). Additionally, ex situ X-ray diffraction pattern of NaNCMFMO indicates a highly reversible phase evolution of O3-P3-O3 during charge/discharge cycles, and GITT measurements reveal faster Na+ diffusion kinetics. Moreover, a NaNCMFMO//hard carbon full-cell battery exhibits superior electrochemical performance: a high reversible specific capacity of 105.1 mAh g- 1 at 1.0 C and capacity retention of 81.1 % over 200 cycles. This work presents a facile and effective strategy to suppress structural degradation in O3-type layered cathodes materials of high-performance SIBs.
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页数:8
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