首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Performance improvement of all-solid-state Li-S batteries with optimizing morphology and structure of sulfur composite electrode
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Performance improvement of all-solid-state Li-S batteries with optimizing morphology and structure of sulfur composite electrode

机译:全固态LI-S电池的性能改进,优化硫复合电极的形态和结构

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摘要

All-solid-state Li-S batteries are fabricated with lithium silicide anodes (Li4.4Si), sulfide-based glass electrolyte (Li2S-P2S5), and sulfur composite (sulfur + acetylene black + solid electrolyte) cathode. Various preparation methods, such as mortar mixing (MM), ball milling (BM), and secondary ball milling (SBM), are applied for the sulfur composite cathode. By changing the preparation methods from MM to SBM, the electrode morphology and the electrolyte/cathode interfacial area are significantly improved, as confirmed with BET, SEM/EDS, and GITT analyses. These effects are reflected in the charge-discharge tests, resulting in higher capacity of the SBM cell. Pyrolytic graphite sheet (PGS) is employed for the gradient structure of the sulfur composite cathode, and the cell with PGS shows higher volumetric capacity and equivalent gravimetric capacity than do cells with the conventional cathode structure. This is because the cathode thickness is reduced and the electron transport to/from the current collector is facilitated. Thus, the present work indicates that design and preparation of the electrode greatly affects the performance of solid state batteries with sulfur composite cathodes. (C) 2017 Elsevier B.V. All rights reserved.
机译:全固态LI-S电池用硅化锂阳极(Li4.4SI),硫化物基玻璃电解质(Li2S-P2S5)和硫复合材料(硫+乙炔黑+固体电解质)阴极制成。硫复合阴极施加各种制备方法,例如砂浆混合(MM),球磨(BM)和二次球磨(SBM)。通过将制备方法从MM改变为SBM,用BET,SEM / EDS和GITT分析证实,可以显着改善电极形态和电解质/阴极界面区域。这些效果反映在电荷放电测试中,导致SBM细胞的容量更高。热解石墨片材(PGS)用于硫复合阴极的梯度结构,具有PGS的电池显示比具有传统阴极结构的细胞更高的体积容量和等同的重量容量。这是因为减小了阴极厚度并且便于向/来自集电器的电子传输。因此,本工作表明,电极的设计和制备极大地影响了固态电池与硫复合阴极的性能。 (c)2017年Elsevier B.V.保留所有权利。

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