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High Capacity O3-Type Na[Li 0.05 (Ni 0.25 Fe 0.25 Mn 0.5 ) 0.95 ]O 2 Cathode for Sodium Ion Batteries

作者:Seungmin Oh, Seung‐Taek Myung, Jang‐Yeon Hwang, Bruno Scrosati, Khalil Amine, Yang‐Kook Sun · 发表于:Chemistry of Materials · 年份:2014 · DOI:10.1021/cm502481b · 被引用次数:236 · 研究领域:Advancements in Battery Materials、Advanced Battery Materials and Technologies、Extraction and Separation Processes

In this work we report Na[Li 0.05 (Ni 0.25 Fe 0.25 Mn 0.5 ) 0.95 ]O 2 layered cathode materials that were synthesized via a coprecipitation method. The Na[Li 0.05 (Ni 0.25 Fe 0.25 Mn 0.5 ) 0.95 ]O 2 electrode exhibited an exceptionally high capacity (180.1 mA h g –1 at 0.1 C-rate) as well as excellent capacity retentions (0.2 C-rate: 89.6%, 0.5 C-rate: 92.1%) and rate capabilities at various C-rates (0.1 C-rate: 180.1 mA h g –1, 1 C-rate: 130.9 mA h g –1, 5 C-rate: 96.2 mA h g –1 ), which were achieved due to the Li supporting structural stabilization by introduction into the transition metal layer. By contrast, the electrode performance of the lithium-free Na[Ni 0.25 Fe 0.25 Mn 0.5 ]O 2 cathode was inferior because of structural disintegration presumably resulting from Fe 3+ migration from the transition metal layer to the Na layer during cycling. The long-term cycling using a full cell consisting of a Na[Li 0.05 (Ni 0.25 Fe 0.25 Mn 0.5 ) 0.95 ]O 2 cathode was coupled with a hard carbon anode which exhibited promising cycling data including a 76% capacity retention over 200 cycles.