著者
Takuma Noda Hanseul Kim Kenta Watanabe Kota Suzuki Naoki Matsui Ryoji Kanno Masaaki Hirayama
出版者
The Ceramic Society of Japan
雑誌
Journal of the Ceramic Society of Japan (ISSN:18820743)
巻号頁・発行日
vol.131, no.10, pp.651-658, 2023-10-01 (Released:2023-10-01)
参考文献数
27

The reaction distribution in the composite cathode of an all-solid-state battery (ASSB) was directly tracked by in situ scanning electron microscopy (SEM) combined with energy dispersive X-ray spectroscopy (EDX). Contact between an electrode active material and a solid electrolyte is important for improving the properties of ASSBs as a promising next-generation battery. An in situ analysis is significant for establishing strategies to obtain sufficient contact areas between the active material and solid electrolyte particles. SEM-EDX has the advantages of in-situ measurement in spatial/time resolution, non-destruction, and versatility. We investigated the sensitivity of EDX to the Na signal and distinguishable distance to ensure sufficient spatial/time resolution. The acceleration voltage of 5 kV for the electron beam provided the highest sensitivity to the Na signal among all acceleration voltages. The distinguishable distance decreased with increasing magnification owing to the decrease in pixel size. Cross-sectional SEM-EDX images of the TiS2–Na3PS4/Na3PS4/Na–Sn cell were collected during charge/discharge. The time variation of Na signal intensity confirms the deintercalation of Na+ in the TiS2–Na3PS4 cathode layer. Moreover, intercalation on the solid electrolyte side proceeded faster than that on the current collector side. This was because the rate-determining step was ionic conductivity rather than electronic conductivity based on the difference between ionic and electronic conductivities. Ex situ observations detected only a uniform distribution in the composite after Na+ diffusion had relaxed. Operando SEM-EDX is a new tool to directly explore the intermediate conditions of electrode materials under ASSB operation.

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全固体電池の電極内の反応分布の可視化手法の論文。 オペランドSEM-EDXでNa系の全固体電池セルの複合電極内の反応分布を可視化。EDXで検出困難なLiと違い、Naでは極板内の反応ムラがきれいに可視化されており面白い結果。 https://t.co/7p8owKgL8t
一報アクセプトと同時に、 アクセプト済みの特集号が出たので、 見かけ上の論文ラッシュ! 筆頭は一本です笑 https://t.co/Q69ueIIuQM https://t.co/peOXc7gWao https://t.co/sfX03LhO97 https://t.co/eOQ4rsjroz https://t.co/TdgORTl7jM

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