用阻抗光谱仪测定 LiPON 电导率的有效性

Alexander Rudy, Alena Novozhilova, Julia Egorova
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引用次数: 0

摘要

一个假设得到了证实,即普遍接受的 LiPON 电导率值应归因于吸收电流和位移电流。原因是双电层的场屏蔽作用对漂移电流的贡献较小。这一假设的依据是对 LiPON 吸收电容的测量,根据测量结果,其介电常数约为 106。我们提出了一个包含非理想吸收元件的替代等效电路,并计算了其阻抗。结果表明,替代电路的博德图与实验曲线十分接近。根据提出的双电层模型计算了电场屏蔽的参数和幅度。考虑到屏蔽效应,得出了 LiPON 的漂移电导率,这与锂浓度和离子迁移率的数据十分吻合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Validity of LiPON Conductivity Determined by Impedance Spectroscopy
A hypothesis that the generally accepted value of the LiPON conductivity should be attributed to the absorption and displacement currents is substantiated. The reason is a small contribution of the drift current due to field screening by the electric double layer. The basis for this assumption is the measurement of the LiPON absorption capacitance, according to which its dielectric constant is about 106. An alternative equivalent circuit containing a non-ideal absorption element is proposed and its impedance is calculated. It is shown that the Bode diagrams of the alternative circuit approximate the experimental curves well. Parameters and the magnitude of electric field screening are calculated based on a proposed model of a double electric layer. Considering the screening effect, the drift conductivity of LiPON is obtained, which is in good agreement with the data on lithium concentration and ion mobility.
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