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Aluminum based sulfide solid lithium ionic conductors for all solid state batteries

机译:硫化铝基于固体锂离子全固态电池的导体

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The present work focuses on the synthesis of lithium ionic conductors based on a Li2S-Al2S3-GeS-P2S5 system due to the high ionic conductivity exhibited by the constituents of this system. Mechanical milling for a short duration and a single step heat treatment at a moderate temperature of 550℃ resulted in crystalline powders with high lithium ionic conductivity at room temperature that are comparable to the organic liquid electrolytes. The effect of various aluminum to germanium ratios was studied. Among the samples containing Al: Ge, the ratio of 30 : 70 was found to show high ionic conductivities of .1.7 × 10~(-3) S cm~(-1) at 25 °C and ~6 × 10~3 S cm~(-1) at 100 °C equivalent. The activation energy of this material was significantly less (E_a = 17 kJ mol~(-1)), which can be considered to be the best value among solid electrolytes. The electrochemical stability was analyzed using cyclic voltammetry between —0.3 and 5.0 V and it was found that the voltammetric profile was smooth without any additional current response, due to electrolyte decomposition, or any other side reaction, except a pair of lithium deposition and stripping peaks.
机译:目前的工作重点是合成的基于一个锂离子导体Li2S-Al2S3-GeS-P2S5系统由于离子较高导电率表现出的成分这个系统。持续时间和一个单步热处理中等温度550℃导致水晶粉高锂离子的室温电导率与有机液体电解质。各种铝锗的效果率进行了研究。艾尔:通用电气,30的比例:70被发现高离子导率.1.7×10 ~ (3)厘米~(- 1)在25°C和~ 6×10 ~ 3厘米~(- 1),享年100岁°C。材料是大大减少(E_a = 17 kJ摩尔~(1)),它可以被认为是最好的价值在固体电解质。使用电化学稳定性进行了分析循环伏安法-0.3和5.0 V之间发现伏安概要文件是什么光滑,没有任何额外的电流响应,由于电解液分解,或任何其他副反应,除了一双锂沉积和剥离的山峰。

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