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“豌豆荚状”纤维网络:复合固态电解质抑制固态锂金属电池中锂枝晶生长的通用策略。

"Peapod-like" Fiber Network: A Universal Strategy for Composite Solid Electrolytes to Inhibit Lithium Dendrite Growth in Solid-State Lithium Metal Batteries.

作者信息

Fan Wanqing, Gou Jingren, Huang Ying, She Kaihang, Yu Meng, Zhang Zheng

机构信息

School of Chemistry and Chemical Engineering, Northwestern Polytechnical University, Xi'an 710072, China.

Beijing Key Laboratory for Membrane Materials and Engineering, Department of Chemical Engineering, Tsinghua University, Beijing 100084, China.

出版信息

Nano Lett. 2024 Jul 24;24(29):9050-9057. doi: 10.1021/acs.nanolett.4c02274. Epub 2024 Jul 15.

Abstract

Solid-state lithium metal batteries (SSLMBs) are a promising energy storage technology, but challenges persist including electrolyte thickness and lithium (Li) dendrite puncture. A novel three-dimensional "peapod-like" composite solid electrolyte (CSEs) with low thickness (26.8 μm), high mechanical strength, and dendrite inhibition was designed. Incorporating LiLaZrO (LLZO) enhances both mechanical strength and ionic conductivity, stabilizing the CSE/Li interface and enabling Li symmetric batteries to stabilize for 3000 h. With structural advantages, the assembled LFP||Li and NCM811||Li cells exhibit excellent cycling performance. In addition, the constructed NCM811 pouch cell achieves a high gravimetric/volumetric energy density of 307.0 Wh kg/677.7 Wh L, which can light up LEDs under extreme conditions, demonstrating practicality and high safety. This work offers a generalized strategy for CSE design and insights into high-performance SSLMBs.

摘要

固态锂金属电池(SSLMBs)是一种很有前景的储能技术,但仍存在包括电解质厚度和锂枝晶穿刺等挑战。设计了一种新型的具有低厚度(26.8μm)、高机械强度和枝晶抑制功能的三维“豆荚状”复合固态电解质(CSEs)。掺入LiLaZrO(LLZO)可提高机械强度和离子电导率,稳定CSE/锂界面,并使锂对称电池稳定运行3000小时。凭借结构优势,组装的LFP||Li和NCM811||Li电池表现出优异的循环性能。此外,构建的NCM811软包电池实现了307.0 Wh kg/677.7 Wh L的高重量/体积能量密度,在极端条件下可点亮发光二极管,展示了实用性和高安全性。这项工作为CSE设计提供了一种通用策略,并为高性能SSLMBs提供了见解。

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