自行车
阴极
电池(电)
材料科学
兴奋剂
钠离子电池
离子
钠
化学工程
化学
光电子学
阳极
电极
冶金
物理
热力学
工程类
物理化学
有机化学
法拉第效率
功率(物理)
考古
历史
作者
Xinsheng Wu,Jay Whitacre
出处
期刊:Journal of The Electrochemical Society
[The Electrochemical Society]
日期:2024-08-22
卷期号:171 (9): 090509-090509
标识
DOI:10.1149/1945-7111/ad7291
摘要
P2-phased layered oxide materials have been extensively studied as cathode material for sodium-ion batteries due to their high capacities and ionic conductivities, making them promising for large-scale applications. Additionally, manganese-based compounds, with their low cost and high capacity, have attracted significant attention in recent years. However, challenges remain regarding durability issues and related structural instability caused by the Jahn-Teller effect induced by Mn 3+ ions formed during the cycling process in these materials, which causes manganese dissolution during use. In this study, we introduce a cathode composition of Na 0.8 Mn 0.75 Fe 0.2 Al 0.05 O 2 and show that bismuth doping enhances the structural stability of the cathode material during electrochemical cycling. Electrodes with varying levels of bismuth doping were compared in half-cell configurations; material with 1% bismuth doping demonstrated outstanding stability, retaining 95.8% capacity after 200 cycles at a 0.2 C rate through the full potential range. dQ/dV analysis shows that bismuth doping effectively suppresses the excess Mn redox, which could otherwise deteriorate the cathode structure. As a proof of concept, Bi-doped materials were implemented in full cells paired with hard carbon that exhibited much better stability than those without bismuth doping. Lastly, the moisture and air stability of the bismuth-doped electrode were tested, demonstrating good stability.
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