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A new kind of all-solid-state thin-film-type lithium-ion battery developed by applying a DC high voltage

机译:通过施加直流高压开发的新型全固态薄膜型锂离子电池

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A new kind of all-solid-state thin-film-type lithium-ion battery was fabricated by applying a D.C. high voltage. Application of the D.C. high voltage to a layer of Cu/Li2O-Al2O3-TiO2-P2O5-based glass ceramics sheet/amorphous Li-Mn-O/Pt, where Cu side was connected to cathode and Pt side to anode, permitted an "in situ formed" negative electrode material at the Cu/glass ceramics sheet interface. This negative electrode material was reductive decomposition material of the glass ceramics formed at the glass ceramics/Cu interface. The negative electrode material was irreversibly formed and then some of reaction current was required to be prepared. It was suggested that application of D.C. high voltage to the layer induced the oxidation reaction of oxygen ions at the positive electrode side around the amorphous Li-Mn-O/glass ceramics interface, which was consumed to prepare the negative electrode material. The resultant all-solid-state thin-film-type lithium-ion battery repeated stable charge-discharge reaction at 1.4 V. (c) 2006 Elsevier B.V. All rights reserved.
机译:通过施加直流高压来制造一种新型的全固态薄膜型锂离子电池。将直流高压施加到基于Cu / Li2O-Al2O3-TiO2-P2O5的玻璃陶瓷片/非晶Li-Mn-O / Pt层上,其中Cu侧连接到阴极,Pt侧连接到阳极,在铜/玻璃陶瓷片界面处原位形成的“负极材料”。该负极材料是在玻璃陶瓷/ Cu界面形成的玻璃陶瓷的还原分解材料。负极材料不可逆地形成,然后需要准备一些反应电流。建议在该层上施加直流高压,在非晶态的Li-Mn-O /玻璃陶瓷界面周围的正极侧引起氧离子的氧化反应,该氧离子被消耗以制备负极材料。所得的全固态薄膜型锂离子电池在1.4 V下重复稳定的充放电反应。(c)2006 Elsevier B.V.保留所有权利。

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