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螯合剂辅助法合成 P2 型 Na(2/3)Fe(1/2)Mn(1/2)O2 及其钠离子存储性能的改善

Enhanced Sodium Ion Storage Behavior of P2-Type Na(2/3)Fe(1/2)Mn(1/2)O2 Synthesized via a Chelating Agent Assisted Route.

机构信息

Beijing Key Laboratory of Environmental Science and Engineering, School of Materials Science and Engineering, Beijing Institute of Technology , Beijing 100081, PR China.

Collaborative Innovation Center of Electric Vehicles in Beijing , Beijing 100081, PR China.

出版信息

ACS Appl Mater Interfaces. 2016 Feb 3;8(4):2857-65. doi: 10.1021/acsami.5b11848. Epub 2016 Jan 20.

Abstract

On the basis of resource abundance and low cost, high capacity layered P2-type Na2/3Fe1/2Mn1/2O2 material is regarded as a potential cathode material for sodium-ion batteries but suffers from its unstable structure during cycling. In this work, P2-type Na2/3Fe1/2Mn1/2O2 layered materials were synthesized by a chelating agent assisted sol-gel method with NH3·H2O. With the addition of NH3·H2O and the control of the synthesis conditions, highly active material with a more stable structure and better electrochemical performance was obtained. Furthermore, the influences of structure changes during different voltage ranges (1.5-4.0 V and 1.5-4.3 V vs Na(+)/Na) on the Na(+) storage behaviors were also evaluated and compared. It is confirmed that, when being charged to 4.2 V, an OP4-type phase emerges, which can reduce the damage by the gilding of the MeO2 layers but leads to an unstable crystal structure. For long-term cycling, it is preferred to cut off at 4.0 V rather than at 4.3 V. For the optimized P2-type Na2/3Fe1/2Mn1/2O2 calcined at 900 °C, a discharge capacity of 92 mAh/g remains after 40 cycles in the voltage range of 1.5-4.0 V, and the Coulombic efficiency remains 100%.

摘要

基于资源丰富且成本低、高容量的 P2 型 Na2/3Fe1/2Mn1/2O2 材料被认为是钠离子电池的潜在阴极材料,但在循环过程中其结构不稳定。在这项工作中,采用 NH3·H2O 辅助的螯合溶胶-凝胶法合成了 P2 型 Na2/3Fe1/2Mn1/2O2 层状材料。通过添加 NH3·H2O 和控制合成条件,获得了具有更稳定结构和更好电化学性能的高活性材料。此外,还评估和比较了不同电压范围(1.5-4.0 V 和 1.5-4.3 V 相对于 Na(+)/Na)下结构变化对 Na(+)存储行为的影响。结果证实,当充电至 4.2 V 时,会出现 OP4 型相,这可以减轻 MeO2 层的镀金损伤,但会导致晶体结构不稳定。对于长期循环,最好在 4.0 V 而不是 4.3 V 截止。对于在 900°C 下煅烧的优化的 P2 型 Na2/3Fe1/2Mn1/2O2,在 1.5-4.0 V 的电压范围内循环 40 次后,放电容量仍保持在 92 mAh/g,库仑效率保持 100%。

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