电解质
材料科学
电池(电)
离子电导率
电导率
电化学
电化学窗口
锂(药物)
复合数
化学工程
快离子导体
无机化学
分析化学(期刊)
离子
化学
电极
复合材料
热力学
色谱法
物理化学
有机化学
物理
工程类
内分泌学
功率(物理)
医学
作者
Valerio Gulino,Matteo Brighi,Fabrizio Murgia,Peter Ngene,Petra E. de Jongh,Radovan Černý,Marcello Baricco
出处
期刊:ACS applied energy materials
[American Chemical Society]
日期:2021-01-29
卷期号:4 (2): 1228-1236
被引量:55
标识
DOI:10.1021/acsaem.0c02525
摘要
LiBH4 has been widely studied as a solid-state electrolyte in Li-ion batteries working at 120 °C due to the low ionic conductivity at room temperature. In this work, by mixing with MgO, the Li-ion conductivity of LiBH4 has been improved. The optimum composition of the mixture is 53 v/v % of MgO, showing a Li-ion conductivity of 2.86 × 10–4 S cm–1 at 20 °C. The formation of the composite does not affect the electrochemical stability window, which is similar to that of pure LiBH4 (about 2.2 V vs Li+/Li). The mixture has been incorporated as the electrolyte in a TiS2/Li all-solid-state Li-ion battery. A test at room temperature showed that only five cycles already resulted in cell failure. On the other hand, it was possible to form a stable solid electrolyte interphase by applying several charge/discharge cycles at 60 °C. Afterward, the battery worked at room temperature for up to 30 cycles with a capacity retention of about 80%.
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