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Updated: Jan 17, 2026

Characterization of Electrode Materials for Lithium Ion and Sodium Ion Batteries Using Synchrotron Radiation Techniques
Published on: November 11, 2013
Selective Oxygen Doping of Li6.6Si0.6Sb0.4S5I Electrolyte for Enhanced Air Stability and Electrochemical Performance
1State Key Laboratory of Advanced Electromagnetic Technology, School of Electrical and Electronic Engineering, Huazhong University of Science and Technology, Wuhan, Hubei, 430074, China.
Abstract:
The argyrodite electrolyte Li6.6Si0.6Sb0.4S5I has garnered significant interest due to its high ionic conductivity of 9.0 mS cm-1. However, its integration into composite cathodes is hindered by poor chemical and electrochemical stability, limiting its practical application. This study investigates an O doping strategy to enhance the overall performance of Li6.6Si0.6Sb0.4S5I. In contrast to previous studies, a comparative analysis of two different oxygen sources Li2O and Sb2O5 is conducted. The results demonstrate that the electrochemical stability of the material obviously improves when Li2O is used as the O source, while its air stability significantly enhances when Sb2O5 is used. Furthermore, Li6.6Si0.6Sb0.4S5I (and Li6.6Si0.6Sb0.4S4.9IO0.1-Li2O) is combined with Li3InCl6 (and Li3.25InCl5.75O0.25) to fabricate different separator configurations. Through aging tests, the optimal separator configuration, Li3.25InCl5.75O0.25/Li6.6Si0.6Sb0.4S4.9IO0.1-Li2O, is found. Batteries assembled with this separator exhibit stable performance over 800 cycles at an upper cutoff voltage of 3.9 V (vs. Li-In), while maintaining an excellent capacity retention rate of 80.2%.

