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首页> 外文期刊>Nanoscale >A stable layered P3/P2 and spinel intergrowth nanocomposite as a long-life and high-rate cathode for sodium-ion batteries
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A stable layered P3/P2 and spinel intergrowth nanocomposite as a long-life and high-rate cathode for sodium-ion batteries

机译:一个稳定分层P3 / P2和尖晶石共生纳米复合材料作为一种长寿命和高效的钠电池阴极

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摘要

Layered sodium transition-metal oxides, NaxMeO2, with large theoretical capacity are regarded as an important class of cathode materials for sodium-ion batteries (SIBs). However, they usually exhibit inferior thermodynamic stability and sluggish Na+ kinetics due to the unwanted phase transitions and large Na+-ionic radius. In this work, considering the beneficial synergistic effects of layered P2/P3 and Fd3m spinel phases, a stable layered/spinel intergrowth nanocomposite Na-0.5[Ni0.2Co0.15Mn0.65]O-2 is rationally designed and successfully prepared via a co-precipitation route and a subsequent solid-state reaction, and the triphase synergy in this layered/spinel nanocomposite is demonstrated. In Na/Na-0.5[Ni0.2Co0.15Mn0.65]O-2 half-cells, it delivers a high specific capacity of similar to 180 mA h g(-1) and a good cycling stability, with a capacity retention of 87.6% after 100 cycles, at a rate of 0.1C between 1.5 and 4.0 V (vs. Na/Na+). The large reversible capacity of 105 mA h g(-1) is also achieved even at a high rate of 10C, indicating high-rate capability. Besides, the full-cells using this nanocomposite as the cathode and hard carbon as the anode exhibit long-term cycle-life and high-power properties, indicating the expected merits of layered/spinel mixed phases. The superior sodium storage performance of this layered P3/P2 and spinel intergrowth nanocomposite makes it a promising candidate as a long-life and high-rate cathode for SIBs.
机译:NaxMeO2分层钠过渡金属氧化物,被视为拥有大量的理论能力一个重要的类阴极材料钠电池(兄弟姐妹)。通常表现出劣质的热力学稳定性和缓慢Na +动力学由于不必要的相变和大型Na +离子半径。这项工作,考虑到有益的协同分层的影响P2、P3和Fd3m尖晶石阶段,一个稳定的分层/尖晶石共生纳米复合材料na - 0.5 [Ni0.2Co0.15Mn0.65] 0 2是合理的设计并成功通过共同沉淀和随后的路线固态反应,三相的协同作用这个分层/尖晶石纳米复合材料演示。汹涌,它提供了一个高的特殊能力类似于180 mA h g(1)和良好的循环稳定,容量保留87.6%100个周期后,速度1.5 0.1摄氏度之间和4.0 V(与Na / Na +)。容量105毫安h g(1)甚至也实现了以高速度10 c,表明高效能力。碳纳米复合材料作为阴极和努力阳极表现出长期的循环寿命和高功率特性,表明预期分层/尖晶石的混合阶段。优越的钠存储性能分层P3 / P2和尖晶石共生作为纳米复合材料是一种很有前途的候选人长寿命、高效的阴极为兄弟姐妹。

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