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Progress and Perspective of Controlling Li Dendrites Growth in All‐Solid‐State Li Metal Batteries Via External Physical Fields

ADVANCED ENERGY AND SUSTAINABILITY RESEARCH(2024)

Chinese Acad Sci | Helmholtz Zentrum Berlin Mat & Energie | Bundesanstalt Mat Forsch & Prufung BAM

Cited 2|Views35
Abstract
Li dendrites penetration through solid electrolytes (SEs) challenges the development of solid‐state Li batteries (SSLBs). To date, significant efforts are devoted to understand the mechanistic dynamics of Li dendrites nucleation, growth, and propagation in SEs, and various strategies that aim to alleviate and even inhibit Li dendrite formation have been proposed. Nevertheless, most of these conventional strategies require either additional material processing steps or new materials/layers that eventually increase battery cost and complexity. In contrast, using external fields, such as mechanical force, temperature physical field, electric field, pulse current, and even magnetic field to regulate Li dendrites penetration through SEs, seems to be one of the most cost‐effective strategies. This review focuses on the current research progress of utilizing external physical fields in regulating Li dendrites growth in SSLBs. For this purpose, the mechanical properties of Li and SEs, as well as the experimental results that visually track Li penetration dynamics, are reviewed. Finally, the review ends with remaining open questions in future studies of Li dendrites growth and penetration in SEs. It is hoped this review can shed some light on understanding the complex Li dendrite issues in SSLBs and potentially guide their rational design for further development.
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Li dendrites,Li dendrites penetration mechanisms,solid electrolytes,solid-state batteries
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要点】:该论文回顾了利用外部物理场调控全固态锂金属电池中锂枝晶生长的最新研究进展,并提出了未来的研究方向。

方法】:通过综述机械力、温度、电场、脉冲电流和磁场等外部物理场对锂枝晶生长的影响来探讨这一问题。

实验】:文中分析了锂和固态电解质(SEs)的机械性能,以及直观追踪锂穿透动力学的实验结果,但未指明具体数据集名称。