DOE OSTI · 1963045
Highly reversible Li 2 RuO 3 cathodes in sulfide-based all solid-state lithium batteries
Abstract
The practical application of high-capacity lithium-rich cathode materials in lithium-ion batteries has been largely restricted by severe side reactions with electrolytes. Herein, we report a highly stable lithium-rich Li 2 RuO 3 cathode by forming a passivating solid electrolyte interphase at the interface with a sulfide solid electrolyte such as Li 6 PS 5 Cl in all-solid-state lithium batteries (ASSLBs), which efficiently suppresses serious parasitic interfacial reactions and fast-increasing interfacial impedance normally observed in liquid electrolytes. The exceptionally high interfacial stability of the Li 2 RuO 3 /sulfide electrolyte interface contributes to a high reversible capacity of 257 mA h g –1 of Li 2 RuO 3 at 0.05C rate, and unprecedented cycling stability with 90% capacity retention after 1000 cycles at 1C rate. Iin this work, comprehensive experimental characterizations and first-principles calculations disclose that electronically insulating interfacial reaction products forming at the interface between the Li 2 RuO 3 cathode and Li 6 PS 5 Cl facilitate the formation of a stable and passivating interphase and block the continuous side reactions. Importantly, reversible oxygen redox activity of Li 2 RuO 3 is well-maintained in this configuration of ASSLBs even after 600 cycles, thus the common voltage decay of the Li-rich material is also significantly reduced. These new discoveries demonstrate the critical role of interface design for achieving prolonged cycling stability of lithium-rich cathode materials.
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Wu, Yuqi, Zhou, Ke, Ren, Fucheng, Ha, Yang, Liang, Ziteng, Zheng, Xuefan, Wang, Zhenyu, Yang, Wu, Zhang, Maojie, Luo, Mingzeng, Battaglia, Corsin, Yang, Wanli, Zhu, Lingyun, Gong, Zhengliang, Yang, Yong. 2022-07-06. Highly reversible Li 2 RuO 3 cathodes in sulfide-based all solid-state lithium batteries. https://doi.org/10.1039/d2ee01067d
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