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首页> 外文期刊>Journal of power sources >Surface passivation of Na_xFe[Fe(CN)_6] cathode to improve its electrochemical kinetics and stability in sodium-ion batteries
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Surface passivation of Na_xFe[Fe(CN)_6] cathode to improve its electrochemical kinetics and stability in sodium-ion batteries

机译:Na_xFe [Fe(CN)_6]阴极的表面钝化以改善其电化学动力学和在钠离子电池中的稳定性

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摘要

Prussian blue analogs (PBAs) are considered as promising cathode materials in sodium-ion batteries. However, PBAs usually suffer from low electrical conductivity and high humid sensitivity, which results in the poor electrochemical kinetics and stability. In this work, a passivation strategy is proposed to solve these problems. The sodium iron hexacyanoferrate (PB) passivated by acetate ligands exhibits significantly improved electrochemical kinetics. It delivers a specific capacity of 128 mAh g(-1) at 25 mA g(-1). Even at 2 A g(-1), the capacity still retains 94.6 mAh g(-1). Most impressively, the passivated PB can maintain excellent electrochemical stability when exposed in the humid air for 7 days. Further investigations show that the strong physical interaction between the acetate ligands and the exposed Fe atoms can inhibit the readsorption of water and induce the electron transfer between low spin Fe and high spin Fe in PB. Thus, the surface passivation can efficiently enhance the electrical conductivity and electrochemical stability of PB.
机译:普鲁士蓝类似物(PBA)被认为是钠离子电池中有希望的正极材料。但是,PBA通常具有较低的电导率和较高的湿度敏感性,这导致较差的电化学动力学和稳定性。在这项工作中,提出了一种钝化策略来解决这些问题。被乙酸盐配体钝化的六氰合铁酸钠(PB)表现出明显改善的电化学动力学。它在25 mA g(-1)时可提供128 mAh g(-1)的比容量。即使在2 A g(-1)时,容量仍保持94.6 mAh g(-1)。最令人印象深刻的是,当在潮湿空气中暴露7天后,钝化的PB可以保持出色的电化学稳定性。进一步的研究表明,乙酸酯配体与暴露的Fe原子之间的强物理相互作用可以抑制水的再吸收,并引起PB中低自旋Fe和高自旋Fe之间的电子转移。因此,表面钝化可以有效地增强PB的电导率和电化学稳定性。

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