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通过在位电子顺磁共振波谱法监测 LiNiMnO 电池正极材料中的局部氧化还原过程。

Monitoring local redox processes in LiNiMnO battery cathode material by in operando EPR spectroscopy.

机构信息

Forschungszentrum Jülich GmbH, Institut für Energie- und Klimaforschung (IEK-9), 52425 Jülich, Germany.

出版信息

J Chem Phys. 2018 Jan 7;148(1):014705. doi: 10.1063/1.5008251.

Abstract

Despite the multitude of analytical methods available to characterize battery cathode materials, identifying the factors responsible for material aging is still challenging. We present the first investigation of transient redox processes in a spinel cathode during electrochemical cycling of a lithium ion battery by in operando electron paramagnetic resonance (EPR). The battery contains a LiNiMnO (LNMO) spinel cathode, which is a material whose magnetic interactions are well understood. The evolution of the EPR signal in combination with electrochemical measurements shows the impact of Mn on the Li motion inside the spinel. Moreover, state of charge dependent linewidth variations confirm the formation of a solid solution for slow cycling, which is taken over by mixed models of solid solution and two-phase formation for fast cycling due to kinetic restrictions and overpotentials. Long-term measurements for 480 h showed the stability of the investigated LNMO, but also small amounts of cathode degradation products became visible. The results point out how local, exchange mediated magnetic interactions in cathode materials are linked with battery performance and can be used for material characterization.

摘要

尽管有许多分析方法可用于描述电池正极材料,但确定导致材料老化的因素仍然具有挑战性。我们通过原位电子顺磁共振(EPR)首次研究了锂离子电池电化学循环过程中尖晶石正极的瞬态氧化还原过程。该电池包含 LiNiMnO(LNMO)尖晶石正极,这种材料的磁相互作用已得到很好的理解。EPR 信号的演变与电化学测量相结合,表明 Mn 对尖晶石中 Li 运动的影响。此外,荷电状态相关的线宽变化证实了慢循环时形成固溶体,由于动力学限制和过电位,快循环时由固溶体和两相形成的混合模型取代。480 小时的长期测量表明,所研究的 LNMO 是稳定的,但也可以看到少量正极降解产物。研究结果表明,正极材料中局部的、交换介导的磁相互作用如何与电池性能相关联,并可用于材料特性研究。

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