液体クロマトグラフィー–四重極飛行時間型質量分析法(LC-QToF/MS)を用いたLiイオン二次電池の保存劣化解析

  • 栃原 美佐子
    早稲田大学大学院 先進理工学研究科 JFEテクノリサーチ株式会社 機能材料ソリューション本部
  • 奈良 洋希
    早稲田大学 ナノ・ライフ創新研究機構
  • 横島 時彦
    早稲田大学 ナノ・ライフ創新研究機構
  • 門間 聰之
    早稲田大学大学院 先進理工学研究科 早稲田大学 ナノ・ライフ創新研究機構
  • 逢坂 哲彌
    早稲田大学大学院 先進理工学研究科 早稲田大学 ナノ・ライフ創新研究機構

書誌事項

タイトル別名
  • Liquid Chromatography-Quadruple Time of Flight Mass Spectrometry (LC-QToF/MS) for Deterioration Analysis of Lithium-ion Battery during Storage
  • エキタイ クロマトグラフィー-シジュウキョク ヒコウ ジカンガタ シツリョウ ブンセキホウ(LC-QToF/MS)オ モチイタ Li イオン ニジ デンチ ノ ホゾン レッカ カイセキ

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抄録

Degradation of lithium-ion battery (LIB) was evaluated by using liquid chromatography-quadruple time of flight mass spectroscopy (LC-QToF/MS). Lab-made LIBs were degraded by storing at their states of charge of 50% at 25 or 60°C for three months. The degradation of the LIB was accelerated at 60°C compared with that at 25°C. The electrochemical impedance spectroscopy analysis suggested that the remarkable degradation occurred for solid electrolyte interphase (SEI): it was implied that on one hand, the composition of the SEI for the LIB degraded at 25°C did not vary, on the other hand, that at 60°C varied. For LC-QToF/MS analysis, although decomposed products derived from the electrolyte solution were detected from the electrolyte in the LIB degraded at both 25 and 60°C, those decomposed products were almost the same. Whereas, the difference between decomposed products at 25 and 60°C was confirmed for the interphases between electrodes and electrolyte. The characteristic decomposed products at 60°C was a product with more than C35 and more than 500 m/z of mass number. This product should be one of the reason of capacity degradation due to the internal resistance increase. Thus, a possibility of LC-QToF/MS was demonstrated.

収録刊行物

  • Electrochemistry

    Electrochemistry 85 (11), 721-727, 2017

    公益社団法人 電気化学会

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