首页> 外文期刊>Electrochimica Acta >Enhanced sodium-ion storage capability of P2/O3 biphase by Li-ion substitution into P2-type Na0.5Fe0.5Mn0.5O2 layered cathode
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Enhanced sodium-ion storage capability of P2/O3 biphase by Li-ion substitution into P2-type Na0.5Fe0.5Mn0.5O2 layered cathode

机译:将P2 / O 3双相的钠离子储存能力提高到P2型Na0.5Fe0.5mn0.502分层阴极中的P2 / O3双相的钠离子储存能力

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摘要

Integration of P2 and O3 phases in Na0.5Fe0.5Mn0.5O2 cathode via Li-ion substitution is proposed to enhance its electrochemical performance for sodium-ion battery applications. The formation of P2 and the combination of P2/O3 intergrowth were confirmed by X-ray diffraction refinement, high resolution transmission electron microscopy and X-ray photoelectron microscopy analyses. Various content of lithium was used to find optimum P2+O3 combinations. The optimized Li-ion substituted Na-0.5(Li0.10-Fe0.45Mn0.45)O-2 showed a high initial discharge capacity of 146.2 mAh g(-1) with improved cycling stability, whereas the pristine Na0.5Fe0.5 Mn0.5O2 initially delivered a discharge capacity of 127.0 mAh g(-1). In addition, the combination of P2+O3 increased its average voltage, which is important for achieving high energy density sodium-ion batteries. Overall, the prepared Na-0.5 (Li0.10Fe0.45Mn0.45)O(2)electrode exhibited the improved cycling performance in terms of reversible capacity and rate capability compared to pristine Na0.5Fe0.5Mn0.5O2 electrode material. (C) 2018 Elsevier Ltd. All rights reserved.
机译:提出了通过Li-离子取代的Na0.5Fe0.5mN0.5O2阴极在Na0.5Fe0.5mN0.5O2阴极中的整合。提高其用于钠离子电池应用的电化学性能。 P2的形成和P2 / O3共生的组合是由X射线衍射的改进中,高分辨率透射电子显微镜和X射线光电子显微镜分析证实。锂的各种含量用于寻找最佳P2 + O3组合。优化的锂离子取代的Na-0.5(Li0.10-Fe0.45Mn0.45)O-2显示出高146.2mAhg(-1)的高初始放电容量,具有改善的循环稳定性,而原始Na0.5Fe0.5 MN0.5O2最初输送了127.0 mah g(-1)的放电容量。另外,P2 + O3的组合增加了其平均电压,这对于实现高能量密度钠离子电池是重要的。总的来说,与原始Na0.5FE0.5MN0.5O2电极材料相比,制备的Na-0.5(Li0.10Fe0.45mM0.45)O(2)电极在可逆容量和速率能力方面表现出改善的循环性能。 (c)2018年elestvier有限公司保留所有权利。

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