National Power Battery Innovation Center, GRINM Group Co. Ltd., Beijing 100088, P. R. China.
China Automotive Battery Research Institute Co., Ltd., Beijing 100088, P. R. China.
ACS Appl Mater Interfaces. 2023 Feb 15;15(6):8190-8199. doi: 10.1021/acsami.2c21569. Epub 2023 Feb 3.
Benefiting from the advanced solid-state electrolytes (SSEs), conventional cathodes have been widely applied in all-solid-state lithium batteries (ASSLBs). However, Li-rich Mn-based (LRM) cathodes, which possess enhanced discharge capacities beyond 250 mA h g, have not yet been studied in ASSLBs. In this work, the practical application of LRM cathodes in ASSLBs using a high-voltage-stability halide SSE (LiInCl, LIC) is reported for the first time. Furthermore, we decipher that the active oxygen released from LRM cathodes at a high operation voltage seriously oxidizes the LIC electrolytes, thus resulting in the large interfacial resistance between cathodes and electrolytes and hindering their industrialized application in ASSLBs. Therefore, surface chemistry engineering of LRM cathodes with an ionic conductive coating material of LiNbO (LNO) is employed to stabilize the LRM/LIC interface. Consequently, the LRM-based ASSLBs deliver a high specific capacity of 221 mA h g at 0.1 C and a decent cycle life of 100 cycles. This contribution gives insights into studying the interfacial issues between LRM cathodes and halide electrolytes and sheds light on the application of LRM cathode materials in ASSLBs.
得益于先进的固态电解质(SSE),传统的阴极已广泛应用于全固态锂电池(ASSLB)中。然而,具有超过 250 mA h g 高放电容量的富锂锰基(LRM)阴极尚未在 ASSLB 中进行研究。在这项工作中,首次报道了使用高压稳定卤化物 SSE(LiInCl,LIC)将 LRM 阴极实际应用于 ASSLB。此外,我们揭示了在高工作电压下 LRM 阴极释放的活性氧会严重氧化 LIC 电解质,从而导致阴极和电解质之间的界面电阻增大,阻碍了其在 ASSLB 中的工业化应用。因此,采用具有离子导电涂层材料 LiNbO(LNO)的 LRM 阴极表面化学工程来稳定 LRM/LIC 界面。因此,基于 LRM 的 ASSLB 在 0.1 C 时提供了 221 mA h g 的高比容量和 100 次循环的良好循环寿命。这项工作深入研究了 LRM 阴极和卤化物电解质之间的界面问题,并为 LRM 阴极材料在 ASSLB 中的应用提供了启示。