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Development of manganese-based thin-film probe via hydrothermal process for localized electrochemical impedance analysis of a solid-state electrolyte UPON

机译:水热法开发锰基薄膜探针用于固体电解质UPON的局部电化学阻抗分析

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A facile low-temperature synthesis process, including the first electrodeposition and the second hydrothermal reaction, has been adopted in fabricating the Li-Mn-O thin-film probe to measure the localized electrochemical impedance of the solid-state electrolyte LiPON. The synthesized thin film is uniformly and densely deposited on the probe, which is composed of layered Li2MnO3 and LiMnO2 crystalline phases. In addition to surface topography mapping, using the thin-film probe allows us to discern the dominant charge transfer resistance at the LiPON/Li-Mn-O interface from the electrolyte resistance in nanoscale level, which is different from the results obtained by a conductive probe as well as a MIM cell. It is also found by the thin-film probe that the ion transport in LiPON and charge transfer behavior at the LiPON/Li-Mn-O interface can be facilitated by introducing an external voltage. (C) 2018 Elsevier B.V. All rights reserved.
机译:在制造Li-Mn-O薄膜探针中已经采用了包括第一电沉积和第二水热反应在内的简便的低温合成方法来测量固态电解质LiPON的局部电化学阻抗。合成的薄膜均匀,致密地沉积在探针上,该探针由层状Li2MnO3和LiMnO2晶相组成。除了表面形貌图绘制之外,使用薄膜探针还可以使我们从纳米级的电解质电阻中分辨出LiPON / Li-Mn-O界面处的主要电荷转移电阻,这与通过导电获得的结果不同探针以及MIM电池。薄膜探针还发现,通过引入外部电压可以促进LiPON中的离子迁移和LiPON / Li-Mn-O接口处的电荷转移行为。 (C)2018 Elsevier B.V.保留所有权利。

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