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Internal dynamics of blended Li-insertion electrodes

机译:混合锂插入电极的内部动力学

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摘要

The blending of different Li-insertion compounds is a successful concept to tailor the properties of electrodes for Li-ion batteries. Recent own studies and reports from literature suggest internal redox processes that do not occur in electrodes consisting of a single type of active material. Herein, we summarize recent electrochemical experiments along with theoretical considerations related to internal dynamics in blended insertion electrodes. A special experimental setup and a model-like blend electrode is applied to capture any interactions among the constituents of the blend. In accordance with theoretical considerations from the literature, it is shown experimentally that the constituents are charged/discharged independent from each other, which can lead to high effective C-rates for an individual constituent. At high loads, a constituent with fast reaction kinetics can act as an internal pathway, carrying the current for a more rate-limited constituent. This effect enables very good rate capability but also includes multiple reaction steps, which might reduce the cycle life performance. Furthermore, it is shown that changes in temperature induce a redistribution of Li among the constituents without any active cycling of the cell. These recent insights regarding internal dynamics are discussed with respect to beneficial and unfavorable impacts on the performance of Li-ion batteries with blended insertion electrodes.
机译:混合不同的锂插入化合物是一种成功的概念,可以调整锂离子电池电极的性能。最近的研究和文献报道表明内部的氧化还原过程在由单一类型的活性材料组成的电极中不会发生。在这里,我们总结了最近的电化学实验以及与混合插入电极内部动力学有关的理论考虑。应用特殊的实验装置和类似模型的混合电极来捕获混合成分之间的任何相互作用。根据文献的理论考虑,实验表明,各组分彼此独立地充电/放电,这可以导致单个组分的高效C速率。在高负载下,具有快速反应动力学的成分可以充当内部途径,从而为限速成分提供电流。该效果实现了非常好的速率能力,但还包括多个反应步骤,这可能会降低循环寿命性能。此外,显示出温度的变化引起Li在各成分之间的重新分布,而没有电池的任何主动循环。讨论了有关内部动力学的这些最新见解,涉及对具有混合插入电极的锂离子电池性能的有利和不利影响。

著录项

  • 来源
    《Journal of Energy Storage》 |2018年第12期|101-108|共8页
  • 作者单位

    Institute of Materials Science, TU Dresden;

    Fraunhofer IKTS, Fraunhofer Institute for Ceramic Technologies and Systems;

    Fraunhofer IKTS, Fraunhofer Institute for Ceramic Technologies and Systems;

    Fraunhofer IKTS, Fraunhofer Institute for Ceramic Technologies and Systems;

    Institute of Materials Science, TU Dresden,Fraunhofer IKTS, Fraunhofer Institute for Ceramic Technologies and Systems;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Blended electrodes; Internal dynamics; Pulse; Relaxation;

    机译:混合电极;内部动力学;脉冲;松弛;

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