材料科学
锂(药物)
离子电导率
电解质
空位缺陷
快离子导体
电导率
化学工程
无机化学
物理化学
结晶学
电极
医学
工程类
内分泌学
化学
作者
Liping Wu,Zhichao Zhang,Gaozhan Liu,Wei Weng,Zhihua Zhang,Xiayin Yao
标识
DOI:10.1021/acsami.1c13031
摘要
The ionic conductivities of argyrodite electrolytes are significantly affected by the concentrations of lithium vacancy. Herein, a facile and rapid synthesis route is proposed to systematically investigate Li6–xPS5–xCl1+x (0 ≤ x ≤ 0.8) with different lithium vacancies by adjusting ratios of S/Cl. The highest ionic conductivity of the wet-milling synthesized Li5.4PS4.4Cl1.6 is 6.18 mS cm–1, which is attributed to higher lithium vacancy concentration and lower electrostatic interaction for ion migration. The Li/Li5.4PS4.4Cl1.6/Li symmetric cell cycles stably for 2000 h at 0.1 mA cm–2, showing excellent dendrite suppression capability. Moreover, the initial discharge capacity of LiCoO2/Li5.4PS4.4Cl1.6/Li all-solid-state battery is 126.0 mAh g–1 at 0.1C and the capacity retention is 83% after 50 cycles. The wet-milling method provides the possibility for rapid exploration and preparation of other argyrodite electrolytes in the future.
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