A Comparative Mechanistic Study on the Intercalation Reactions of Mg2+ and Li+ Ions into (Mg0.5Ni0.5)3(PO4)2

被引:2
作者
Romio, Martina [1 ]
Surace, Yuri [1 ]
Mautner, Andreas [2 ,3 ]
Hamid, Raad [1 ]
Jahn, Marcus [1 ]
Cupid, Damian M. [1 ]
Abrahams, Isaac [4 ]
机构
[1] AIT Austrian Inst Technol GmbH, Ctr Low Emiss Transport, Giefinggasse 2, A-1210 Vienna, Austria
[2] Univ Wien, Dept Mat Chem, Wahringer Str 42, A-1090 Vienna, Austria
[3] Univ Nat Resources & Life Sci Vienna, Inst Environm Biotechnol, Dept IFA, Konrad Lorenz Str 20, A-3430 Tulln An Der Donau, Austria
[4] Queen Mary Univ London, Dept Chem, Mile End Rd, London E1 4NS, England
来源
BATTERIES-BASEL | 2023年 / 9卷 / 07期
关键词
magnesium-ion battery; orthophosphate; olivine-related structure; conversion reaction; CATHODE MATERIALS; ELECTROCHEMICAL INSERTION; ELECTRODE MATERIALS; CRYSTAL-STRUCTURE; LOCAL-STRUCTURE; NICKEL METAL; MAGNESIUM; LITHIUM; BATTERIES; PHOSPHATES;
D O I
10.3390/batteries9070342
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
Magnesium-ion batteries represent promising environmentally sustainable energy-storage systems with higher energy densities than their lithium counterparts. In this work, the charge storage mechanisms of the olivine-related compound (Mg0.5Ni0.5)(3)(PO4)(2) using Mg2+ and Li+ ions were investigated and compared for the first time when copper was chosen as the current collector. A comprehensive physicochemical and electrochemical characterization was performed on the pristine powder and electrodes at different states of charge. Although (Mg0.5Ni0.5)(3)(PO4)(2) is electrochemically active, it undergoes irreversible conversion reactions in both Mg and Li chemistries. The conversion reactions proceed with an ionic exchange between structural Ni2+ and Mg2+ or Li+ cations, which results in the formation of sarcopside-Mg-3(PO4)(2), a Cu-Ni alloy and poorly crystalline Li3PO4, respectively. A capacity of 600 mA h g(-1) was achieved with a Li metal counter electrode in the Li cell since the conversion reaction could go to completion. A capacity of 92 mA h g(-1) was delivered in the Mg cell using an activated carbon counter electrode. These findings shed light on the fundamental mechanism of activity in olivine-related compounds, underlining the importance of performing systematic studies to unveil the complex interactions between both single-valent and multivalent ions with novel structures.
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页数:23
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