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在锂金属负极上设计空气稳定的界面以改善循环性能。

Designing an Air-Stable Interphase on Lithium Metal Anode to Improve Cycling Performance.

作者信息

Yu Meng, Zhou Han, Ning Xiaohui

机构信息

Center for Alloy Innovation and Design (CAID), State Key Laboratory for Mechanical Behavior of Materials, Xi'an Jiaotong University, Xi'an, Shaanxi 710049, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2024 Mar 13;16(10):13316-13325. doi: 10.1021/acsami.3c19580. Epub 2024 Mar 1.

Abstract

The application of rechargeable lithium metal batteries is challenged by intractable issues of uncontrollable Li dendrite growth that result in poor cycle life and safety risks. In this work, an air-stable interphase is developed to protect the lithium metal anode (LMA) via a facile solution-based approach. The Ag-embedded fluoride-rich interphase not only creates abundant lithiophilic sites for homogenizing Li nucleation and growth but also resists severe air erosion to protect the LMA beneath and enable decent cycling stability. As a result, the Ag-F-rich interphase enables flat Li deposition on LMA, which is clearly observed in the operando Li plating experiments. Paired with a LiFePO cathode (11.8 mg cm), the Ag-F-rich interphase-modified LMA enables 300 stable cycles at 0.5 C, delivering a capacity retention ratio as high as 91.4%. Even after being exposed to air for 1 h, the modified LMA still runs smoothly for over 120 cycles with ignorable capacity decay, exhibiting great air stability. This work proves the concept of functionalizing the interphase on the LMA to enable good cycling performance even under severe air erosion.

摘要

可充电锂金属电池的应用面临着难以解决的问题,即锂枝晶生长不可控,这导致循环寿命不佳和安全风险。在这项工作中,通过一种简便的基于溶液的方法开发了一种空气稳定的界面层,以保护锂金属阳极(LMA)。嵌入银的富氟界面层不仅为锂的均匀成核和生长创造了丰富的亲锂位点,还能抵抗严重的空气侵蚀,保护下方的LMA并实现良好的循环稳定性。结果,富含Ag-F的界面层使锂能够在LMA上平整沉积,这在原位锂电镀实验中清晰可见。与LiFePO阴极(11.8 mg cm)配对,富含Ag-F的界面层修饰的LMA在0.5 C下可实现300次稳定循环,容量保持率高达91.4%。即使在空气中暴露1小时后,改性LMA仍能平稳运行超过120次循环,容量衰减可忽略不计,表现出良好的空气稳定性。这项工作证明了在LMA上对界面层进行功能化的概念,即使在严重的空气侵蚀下也能实现良好的循环性能。

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