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Properties and Structure of the LiCl-films on Lithium Anodes in Liquid Cathodes

机译:液态阴极锂阳极上LiCl膜的性质和结构

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摘要

Lithium anodes passivated by LiCl layers in different types of liquid cathodes (catholytes) based on LiAlCl4 in SOCl2 or SO2 have been studied by means of impedance spectroscopy. The impedance spectra have been fitted with two equivalent circuits using a nonlinear least squares fit program. Information about the ionic conductivity and the structure of the layers has been extracted. A new physical description, which is able to explain the circuit parameters, is proposed. It assumes that the LiCl-layer contains a large number of narrow tunnels and cracks filled with liquid catholyte. It is explained why such tunnels probably are formed, and for a typical case it is shown that tunnels associated with most of the LiCl grain boundaries of the fine crystalline layer near the Li surface are requested in order to explain the impedance response. The LiCl production rate and through this, the growth rate of the LiCl-layer, is limited by the electron conductivity of the layer. Micro-calorimetry data parallel with impedance spectra are used for determination of the electron conductivity of the LiCl-layer.
机译:通过阻抗谱研究了基于LiAlCl4在SOCl2或SO2中的不同类型的液态阴极(阴极)中被LiCl层钝化的锂阳极。使用非线性最小二乘拟合程序将阻抗谱与两个等效电路拟合。已经提取了有关离子电导率和层结构的信息。提出了一种能够解释电路参数的新物理描述。假设LiCl层包含大量狭窄的隧道和充满液体阴极电解液的裂缝。解释了为什么这样的隧道可能形成的原因,并且对于典型的情况,示出了要求与锂表面附近的细晶层的大部分LiCl晶界相关的隧道以解释阻抗响应。 LiCl的生产率以及由此的LiCl层的生长速率受到该层的电子电导率的限制。与阻抗谱平行的微量热数据用于确定LiCl层的电子电导率。

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