Enhancing the electrochemical performance of high-voltage LiNi0.5Mn1.5O4 batteries with a multifunctional inorganic MgHPO4 electrolyte additive

被引:2
作者
Wei, Aijia [1 ]
Yang, Yuqi [2 ]
Mu, Jinping [1 ,3 ]
He, Rui [1 ]
Li, Xiaohui [1 ]
Zhang, Haipeng [2 ]
Liu, Zhenfa [1 ]
Wang, Shasha [1 ]
Zheng, Yong [4 ]
Mei, Shuxing [2 ]
机构
[1] Hebei Acad Sci, Inst Energy Resources, Shijiazhuang 050081, Hebei Province, Peoples R China
[2] China Univ Petr Beijing Karamay, State Key Lab Heavy Oil Proc Karamay, Karamay 834000, Peoples R China
[3] Hebei Univ Technol, Sch Chem Engn & Technol, Tianjin 300130, Peoples R China
[4] China Three Gorges Univ, Coll Mat & Chem Engn, Key Lab Inorgan Nonmet Crystalline & Energy Conver, Hubei Three Gorges Lab, Yichang 443002, Hubei, Peoples R China
基金
中国国家自然科学基金;
关键词
Lithium-ion batteries; LiNi0.5Mn1.5O4; Inorganic electrolyte additive; Electrode/electrolyte interface film; LITHIUM-ION BATTERIES; GRAPHITE/LINI0.5MN1.5O4; CELLS; FLUORINATED ELECTROLYTES; CATHODE; INTERFACE; LIFE;
D O I
10.1038/s41598-025-90702-z
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
The instability of the electrode/electrolyte interface and the metal-ions dissolution of high-voltage LiNi0.5Mn1.5O4 (LNMO) material lead to significant degradation of cycling performance, thereby limiting the large-scale application of LNMO-based batteries. Here, inorganic Mg/Ca/Sr-contained phosphates (MgHPO4, CaHPO4, and SrHPO4) are used individually as functional additives of standard electrolytes to enhance the cycling performance of LNMO. Combined with theoretical calculations, a series of electrochemical measurements and characteristics corroborate that the MgHPO4 is the optimal additive and can preferentially undergo oxidation and reduction decomposition over carbonate solvents. Electrochemical results reveal that the LNMO/Li half-cell containing the MgHPO4 additive shows a capacity retention of 91.9% after 500 cycles at 5 C, higher than that obtained with STD (76.5%). In addition, the LNMO/graphite (Gr) full-cell with MgHPO4 additive increases the capacity retention from 70.8 to 78.0% after 100 cycles at 0.5 C. The addition of MgHPO4 allows a thin, uniform, and conductive cathode-electrolyte interphase (CEI) and solid-electrolyte interphase (SEI) film to be formed on the LNMO cathode and graphite anodes. Furthermore, the preferential reduction of MgHPO4 inhibits the lithium dendritic growth and enables the formation of a more stable SEI on the Li anode. Besides, the MgHPO4 additive serves as a scavenger of detrimental HF, thus suppressing the Ni/Mn ions dissolution and improving the structural stability of LNMO. This study provides a cost-effective strategy involving the use of an inorganic additive for improving the electrochemical performance of high-voltage lithium-ion batteries.
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页数:14
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