Synergistic modification of spinel LiMn2O4 with MgO doping and coating for mitigating the Jahn-Teller effect and enhancing lithium extraction from brine

尖晶石 卤水 雅恩-泰勒效应 兴奋剂 涂层 材料科学 化学工程 萃取(化学) 锂(药物) 冶金 无机化学 化学 纳米技术 离子 色谱法 工程类 有机化学 内分泌学 医学 光电子学
作者
Wenjie Fan,Luxiang Ma,Wencheng Pan,Xin Zeng,Zhixiang Li,Hongli Su,Peng Fei Zhang,Yan Zhao
出处
期刊:Desalination [Elsevier BV]
卷期号:615: 119260-119260 被引量:2
标识
DOI:10.1016/j.desal.2025.119260
摘要

LiMn 2 O 4 (LMO) has emerged as a promising electrode material for the electrochemical extraction of lithium from salt lakes due to its excellent lithium-ion selectivity and structural stability. However, the cyclic use of LMO in Salt Lake brines is often hindered by manganese dissolution and crystal structure collapse, primarily caused by the Jahn-Teller effect. These issues significantly reduce the cycling stability and lithium extraction efficiency of LMO, limiting its practical application. To address this challenge, we developed a molten salt-assisted gradient doping-coating synergistic modification technique aimed at effectively suppressing the Jahn-Teller effect. This approach facilitates the formation of chemically bonded MgO nanolayers on the LMO surface and incorporates Mg 2+ into the bulk structure, thereby significantly enhancing the material's structural stability. Through a combination of density functional theory (DFT) calculations and experimental validation, the modified composite electrode exhibited superior kinetic performance, high capacity, and remarkable cycling stability. In simulated brine, it maintained a lithium adsorption capacity of 26.21 mg·g −1 after 20 consecutive extraction cycles. Furthermore, in the West Taijinar old brine with a high Mg 2+ /Li + ratio of 65.6, the modified electrode demonstrated a capacity retention rate of 81.8 %, approximately 34 % higher than pristine LMO, and reduced the Mg 2+ /Li + ratio from 65.6 to 0.24. Furthermore, the modified electrode exhibited a manganese dissolution rate of only 0.34 %. These findings indicate that the proposed modification strategy significantly improves the cycling stability and lithium extraction performance of LMO, offering a viable pathway for its large-scale application in Salt Lake environments. • Gradient doping and MgO coating mitigate Jahn-Teller distortion and Mn dissolution in LiMn 2 O 4 during cycling. • Retained 81.8 % capacity after 20 cycles in the West Taijinar old brine. • LiMn 2 O 4 @MgO exhibited only 0.34 % Mn dissolution after 20 cycles. • Effectively reducing the Mg 2+ /Li + ratio in low-grade brine.
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