电解质
硫化物
快离子导体
材料科学
离子电导率
自行车
固溶体
电极
氧化物
电导率
固态
相容性(地球化学)
化学工程
无机化学
化学
冶金
物理化学
复合材料
考古
工程类
历史
作者
Pushun Lu,Yu Xia,Guochen Sun,Dengxu Wu,Siyuan Wu,Wenlin Yan,Xiang Zhu,Jiaze Lu,Quanhai Niu,Shaochen Shi,Zhengju Sha,Liquan Chen,Hong Li,Fan Wu
标识
DOI:10.1038/s41467-023-39686-w
摘要
Abstract Inorganic sulfide solid-state electrolytes, especially Li 6 PS 5 X (X = Cl, Br, I), are considered viable materials for developing all-solid-state batteries because of their high ionic conductivity and low cost. However, this class of solid-state electrolytes suffers from structural and chemical instability in humid air environments and a lack of compatibility with layered oxide positive electrode active materials. To circumvent these issues, here, we propose Li 6+x M x As 1-x S 5 I (M=Si, Sn) as sulfide solid electrolytes. When the Li 6+x Si x As 1-x S 5 I (x = 0.8) is tested in combination with a Li-In negative electrode and Ti 2 S-based positive electrode at 30 °C and 30 MPa, the Li-ion lab-scale Swagelok cells demonstrate long cycle life of almost 62500 cycles at 2.44 mA cm −2 , decent power performance (up to 24.45 mA cm −2 ) and areal capacity of 9.26 mAh cm −2 at 0.53 mA cm −2 .
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