材料科学
阴极
电化学
热扩散率
相(物质)
结构稳定性
离子
钠离子电池
化学工程
钠
锰
电极
热力学
冶金
物理化学
结构工程
物理
工程类
法拉第效率
量子力学
有机化学
化学
作者
Zhenguo Wu,Jun‐Tao Li,Yanjun Zhong,Xiaodong Guo,Ling Huang,Benhe Zhong,Daniel Adjei Agyeman,Jin‐Myoung Lim,Duho Kim,Maenghyo Cho,Yong‐Mook Kang
标识
DOI:10.1021/acsami.7b04338
摘要
A synergistic approach for advanced cathode materials is proposed. Sodium manganese oxide with a layered-tunnel hybrid structure was designed, synthesized, and subsequently investigated. The layered-tunnel hybrid structure provides fast Na ion diffusivity and high structural stability thanks to the tunnel phase, enabling high rate capability and greatly improved cycling stability compared to that of the pure P2 layered phase while retaining the high specific capacity of the P2 layered phase. The hybrid structure provided a decent discharge capacity of 133.4 mAh g–1 even at 8 C, which exceeds the reported best rate capability for Mn-based cathodes. It also displayed an impressive cycling stability, maintaining 83.3 mAh g–1 after 700 cycles at 10 C. Theoretical calculation and the potentiostatic intermittent titration technique (PITT) demonstrated that this hybrid structure helps enhance Na ion diffusivity during charge and discharge, attaining, as a result, an unprecendented electrochemical performance.
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