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首页> 外文期刊>Solid state ionics >Fabrication and charge-discharge reaction of all solid-state lithium battery using Li4-2xGe1-xSxO4 electrolyte
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Fabrication and charge-discharge reaction of all solid-state lithium battery using Li4-2xGe1-xSxO4 electrolyte

机译:所有固态锂电池使用LI4-2XGE1-XSXO4电解质的制造和充电 - 放电反应

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摘要

Bulk-type solid-state batteries using a Lithium Super Ionic CONductor (LISICON)-based oxide electrolyte, Li4-2x,Ge1-xSxO4, were assembled by spark plasma sintering (SPS) and electric furnace sintering (FS), and their charge-discharge performances were investigated. Li4-2xGe1-xSxO4, which has a gamma-Li3PO4-type structure, was synthesized by conventional solid-state reaction. The total ionic conductivity of the Li3.6Ge0.8S0.2O4 sample sintered at 600 degrees C by SPS was 2 x 10(-5) S cm(-1) at room temperature, which is comparable to the bulk conductivity of the material sintered at 800-1100 degrees C by FS. No impurity peaks were observed in the X-ray diffraction patterns of the LiNi1/3Mn1/3Co1/3O2-Li3.6Ge0.8S0.2O4 mixture even after high-temperature sintering at 900 degrees C by FS. The solid-state cells of laminated LiNi1/3Mn1/3Co1/3O2 cathode and Li3.6Ge0.8S0.2O4 electrolyte co-sintered by SPS at 600 degrees C and FS at 900 degrees C exhibited first discharge capacities of 130 and 92 mAh g(-1), respectively, at 60 degrees C. These experimental results confirm that the LISICON-based material, Li4.2xGe1-xSxO4, exhibits thermal compatibility to the active material and relatively high lithium ion conductivity, which lead to the high charge discharge performance of the bulk-type all-solid-state cell.
机译:通过火花等离子体烧结(SPS)和电炉烧结(FS)组装使用锂超离子导体(LISICON)基础氧化物电解质,LI4-2X,GE1-XSXO4的散装固态电池。调查了放电性能。通过常规固态反应合成具有γ-Li3PO4型结构的Li4-2XGe1-XSXO4。 Li3.6ge0.8s0.2O4在室温下以600℃烧结的Li3.6ge0.8S0.2O4样品的总离子电导率在室温下为2×10(-5)厘米(-1),其与烧结材料的散装电导率相当在FS的800-1100摄氏度下。即使在900摄氏度下,在900摄氏度下,在LINI1 / 3MN1 / 3CO1 / 3O2-LI3.6GE0.8S0.2O4混合物的X射线衍射图中,在X射线衍射图中没有观察到杂质峰。层压的LiNi1 / 3Mn1 / 3Co1 / 3O2阴极和Li3.6Ge0.8S0.2O4电解质在900摄氏度为600℃和FS的SPS烧结的固态细胞和900℃的FS烧结为130和92mAhg( -1)分别在60摄氏度下,这些实验结果证实,基于LiSicon的材料Li4.2xGe1-XSXO4,对活性材料和相对高的锂离子传导性具有热兼容性,这导致了高电荷放电性能散装型全固态单元。

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