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Fading Mechanisms and Voltage Hysteresis in FeF_2-NiF_2 Solid Solution Cathodes for Lithium and Lithium-Ion Batteries

机译:用于锂和锂离子电池的FEF_2-NIF_2固溶体阴极中的衰落机制和电压滞后

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摘要

The rapid development of ultrahigh-capacity alloying or conversion-type anodes in rechargeable lithium (Li)-ion batteries calls for matching cathodes for next-generation energy storage devices. The high volumetric and gravimetric capacities, low cost, and abundance of iron (Fe) make conversion-type iron fluoride (FeF_2 and FeF_3)-based cathodes extremely promising candidates for high specific energy cells. Here, the substantial boost in the capacity of FeF_2 achieved with the addition of NiF_2 is reported. A systematic study of a series of FeF_2-NiF_2 solid solution cathodes with precisely controlled morphology and composition reveals that the presence of Ni may undesirably accelerate capacity fading. Using a powerful combination of state-of-the-art analytical techniques in combination with the density functional theory calculations, fundamental mechanisms responsible for such a behavior are uncovered. The unique insights reported in this study highlight the importance of careful selection of metals and electrolytes for optimizing electrochemical properties of metal fluoride cathodes.
机译:可充电锂(Li)电池中的超高容量合金化或转化型阳极的快速发展呼叫用于下一代能量存储装置的匹配阴极。铁(Fe)的高容量和重量能力,低成本和丰富的铁(Fe)使转化型铁氟化铁(FEF_2和FEF_3)基于高特异性能量电池的非常有希望的候选者。这里,报道了通过添加NIF_2实现的FEF_2的容量的实质增强。具有精确控制的形态和组合物的一系列FEF_2-NIF_2固溶溶液阴极的系统研究表明,Ni的存在可能不希望地加速能力衰落。使用最先进的分析技术的强大组合与密度泛函理论计算结合,揭示了对这种行为负责的基本机制。本研究报告的独特见解突出了仔细选择金属和电解质的重要性,以优化金属氟化物阴极的电化学性能。

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  • 来源
    《Small》 |2019年第6期|共11页
  • 作者单位

    State Key Laboratory of Powder Metallurgy Central South University Changsha Hunan 410083 China;

    Electrochemistry Branch Sensor and Electron Devices Directorate Army Research Laboratory Adelphi MD 20783 USA;

    School of Materials Science &

    Engineering Georgia Institute of Technology Atlanta GA 30332 USA;

    School of Materials Science &

    Engineering Georgia Institute of Technology Atlanta GA 30332 USA;

    School of Materials Science &

    Engineering Georgia Institute of Technology Atlanta GA 30332 USA;

    Electrochemistry Branch Sensor and Electron Devices Directorate Army Research Laboratory Adelphi MD 20783 USA;

    School of Materials Science &

    Engineering Georgia Institute of Technology Atlanta GA 30332 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 特种结构材料;
  • 关键词

    density functional theory; electrolyte decomposition; hysteresis; lithium-ion batteries; metal fluorides;

    机译:密度函数理论;电解质分解;滞后;锂离子电池;金属氟化物;

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