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In situ(7)Li-NMR analysis of lithium metal surface deposits with varying electrolyte compositions and concentrations

机译:原位(7)利用电解质组合物和浓度的锂金属表面沉积物的Li-NMR分析

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摘要

A major challenge of lithium metal electrodes, in theory a suitable choice for rechargeable high energy density batteries, comprises non-homogeneous lithium deposition and the growth of reactive high surface area lithium, which eventually yields active material losses and safety risks. While it is hard to fully avoid inhomogeneous deposits, the achievable morphology of the occurring lithium deposits critically determines the long-term cycling behaviour of the cells. In this work, we focus on a combined scanning electron microscopy (SEM) and Li-7 nuclear magnetic resonance spectroscopy (Li-7-NMR) study to unravel the impact of the choice of conducting salts (LiPF6 and LiTFSI), solvents (EC : DEC, 3 : 7, DME : DOL, 1 : 1), as well as their respective concentrations (1 M, 3 M) on the electrodeposition process, demonstrating that lithium deposition morphologies may be controlled to a large extent by proper choice of cycling conditions and electrolyte constituents. In addition, the applicability of Li-7-NMR spectroscopy to assess the resulting morphology is discussed. It was found, that lithium deposition analysis based on the Li-7 chemical shift and intensity should be used carefully, as various morphologies can lead to similar results. Still, our case study reveals that the combination of SEM and NMR data is rather advantageous and offers complementary insights that may provide pathways for the future design of tailored electrolytes.
机译:锂金属电极的主要挑战,理论上适用于可再充电的高能量密度电池的选择,包括非均匀锂沉积和反应性高表面积锂的生长,最终产生活性物质损失和安全风险。虽然很难完全避免不均匀的沉积物,但是发生锂沉积物的可实现的形态至关重要地确定细胞的长期循环行为。在这项工作中,我们专注于组合的扫描电子显微镜(SEM)和Li-7核磁共振光谱(Li-7-NMR)研究,以解开导电盐(LiPF6和Litfsi),溶剂的影响的影响(EC :DEC,3:7,DME:DOL,1:1)以及电沉积过程中各自的浓度(1M,3米),证明锂沉积形态可以在很大程度上被控制循环条件和电解质成分。此外,讨论了Li-7-NMR光谱评估所得形态的适用性。发现,基于Li-7化学换档和强度的锂沉积分析应仔细使用,因为各种形态可以导致类似的结果。尽管如此,我们的案例研究表明,SEM和NMR数据的组合相当有利,提供了互补的见解,可以为未来的定制电解质设计提供途径。

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    Univ Munster MEET Battery Res Ctr Inst Phys Chem Corrensstr 46 D-48149 Munster Germany;

    Univ Munster MEET Battery Res Ctr Inst Phys Chem Corrensstr 46 D-48149 Munster Germany;

    Univ Munster MEET Battery Res Ctr Inst Phys Chem Corrensstr 46 D-48149 Munster Germany;

    Univ Munster MEET Battery Res Ctr Inst Phys Chem Corrensstr 46 D-48149 Munster Germany;

    Forschungszentrum Julich Helmholtz Inst Munster HI MS IEK 12 Corrensstr 46 D-48149 Munster Germany;

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  • 正文语种 eng
  • 中图分类 物理学;化学;
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