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Correlative Confocal Raman and Scanning Probe Microscopy in the Ionically Active Particles of LiMn2O4 Cathodes

机译:LiMn2O4阴极离子活性粒子中的相关共焦拉曼光谱和扫描探针显微镜

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摘要

In this contribution, a correlative confocal Raman and scanning probe microscopy approach was implemented to find a relation between the composition, lithiation state, and functional electrochemical response in individual micro-scale particles of a LiMn2O4 spinel in a commercial Li battery cathode. Electrochemical strain microscopy (ESM) was implemented both at a low-frequency (3.5 kHz) and in a high-frequency range of excitation (above 400 kHz). It was shown that the high-frequency ESM has a significant cross-talk with topography due to a tip-sample electrostatic interaction, while the low-frequency ESM yields a response correlated with distributions of Li ions and electrochemically inactive phases revealed by the confocal Raman microscopy. Parasitic contributions into the electromechanical response from the local Joule heating and flexoelectric effect were considered as well and found to be negligible. It was concluded that the low-frequency ESM response directly corresponds to the confocal Raman microscopy data. The analysis implemented in this work is an important step towards the quantitative measurement of diffusion coefficients and ion concentration via strain-based scanning probe microscopy methods in a wide range of ionically active materials.
机译:在这种贡献中,实施了相关的共焦拉曼和扫描探针显微镜方法,以在商用锂电池阴极中的LiMn2O4尖晶石的单个微尺度颗粒中,发现组成,锂化状态和功能电化学响应之间的关系。在低频(3.5 kHz)和高频激发范围(400 kHz以上)均实施了电化学应变显微镜(ESM)。结果表明,由于尖端样品静电相互作用,高频ESM与形貌具有显着的串扰,而低频ESM产生的反应与锂离子的分布和共焦拉曼揭示的电化学非活性相相关显微镜检查。局部焦耳加热和柔电效应对机电响应的寄生影响也被认为是微不足道的。结论是,低频ESM响应直接对应于共焦拉曼显微镜数据。这项工作中进行的分析是通过基于应变的扫描探针显微镜方法在多种离子活性材料中定量测量扩散系数和离子浓度的重要步骤。

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