电容去离子
卤水
插层(化学)
电化学
吸附
锰
材料科学
电极
无机化学
法拉第效率
选择性
锂(药物)
萃取(化学)
化学工程
化学
色谱法
冶金
有机化学
内分泌学
工程类
物理化学
催化作用
医学
作者
Yang Bao,Zhixing Ji,Hongru Zhou,Cui Zhang,Shaoxian Song,Feifei Jia,Jianbo Li,Mildred Quintana
出处
期刊:Small
[Wiley]
日期:2024-11-28
卷期号:: e2406951-e2406951
被引量:9
标识
DOI:10.1002/smll.202406951
摘要
In this work, Li preintercalated λ-LixMnO2 with tunable lithium content is synthesized, which exhibited excellent electrochemical performance and dual-mode electrochemical storage behavior. Double-layer capacitive and diffusion-controlled Faradaic processes play a role in the charge-discharge process, leading to an enhanced lithium selective adsorption capacity. When employed in hybrid capacitive deionization (HCDI), the λ-Li1.5MnO2 obtains a Li+ adsorption capacity of 33.68 mg g-1 in 32.74 mg L-1 Li+ ion solution and low energy consumption of 0.19 Wh g-1. Moreover, the λ-Li1.5MnO2 electrode exhibited outstanding cycling stability, with a significant capacity retention rate of 80% and a manganese mass dissolution rate of 1.2% over 100 intercalation/deintercalation cycles. λ-Li1.5MnO2 achieved outstanding lithium selectivity with a separation factor ≈32.7 at a Mg2+/Li+ molar ratio of 30 in synthetic brine. Importantly, λ-Li1.5MnO2 achieved a high Li+ adsorption capacity and good selectivity in Lop Nor, the low-grade original brine of the XieLi salt flats, making it a candidate electrode for lithium extraction from low-grade original brine. The pre-intercalation strategy offers a viable option for rationalizing other intercalation electrode materials for electrochemical lithium extraction from low-grade original brine.
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