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一种用于锂形态的定量成像框架:将锂金属电池中的沉积均匀性与循环稳定性联系起来。

A quantitative imaging framework for lithium morphology: Linking deposition uniformity to cycle stability in lithium metal batteries.

作者信息

Nicolas Jenny R, Hui Zeyu, Miao Qiushi, Lin Haichen, Davidson Michael R, Liu Ping

机构信息

Program in Materials Science and Engineering, University of California San Diego, La Jolla, CA 92093.

Aiiso Yufeng Li Family Department of Nanoengineering, University of California San Diego, La Jolla, CA 92093.

出版信息

Proc Natl Acad Sci U S A. 2025 Jul 22;122(29):e2502518122. doi: 10.1073/pnas.2502518122. Epub 2025 Jul 15.

Abstract

Characterizing the morphology of lithium (Li) is crucial for developing long-lasting lithium metal batteries. It is well established that more uniform Li deposition correlates with better cell performance. Li morphology is often characterized through qualitative analysis of scanning electron microscopy (SEM) images; however, there are no widely accepted metrics to quantitatively describe deposition uniformity. Here, we propose a framework to quantify uniformity through SEM image analysis via the index of dispersion () metric, which is defined and presented in the context of Li metal batteries. We also explore experimental impacts of sampling protocols on measurements. Our results demonstrate that the metric is highly sensitive to variations in deposition uniformity, including the coexistence and uniformity of multiple morphologies, uniformity within a single morphology, and particle size distribution uniformity. Furthermore, it is demonstrated that uniformity, as measured by the , can be related to the average potential of Li||Li symmetric cells over cycling. Higher capacity cycling leads to more pronounced changes in both and average cell potential. Local minima/maxima are found consistently in both and average cell potential immediately before cells short-circuit, which we suggest may indicate a collapse of the microstructure prior to failure. We put forward this framework as a more robust approach to quantify Li deposition uniformity, advancing the development of Li metal batteries that are safer and longer lasting.

摘要

表征锂(Li)的形态对于开发长效锂金属电池至关重要。众所周知,更均匀的锂沉积与更好的电池性能相关。锂形态通常通过扫描电子显微镜(SEM)图像的定性分析来表征;然而,目前尚无被广泛接受的指标来定量描述沉积均匀性。在此,我们提出了一个框架,通过基于离散指数()指标的SEM图像分析来量化均匀性,该指标是在锂金属电池的背景下定义和提出的。我们还探讨了采样方案对测量的实验影响。我们的结果表明,该指标对沉积均匀性的变化高度敏感,包括多种形态的共存和均匀性、单一形态内的均匀性以及粒径分布均匀性。此外,结果表明,通过该指标测量的均匀性与Li||Li对称电池在循环过程中的平均电位有关。更高容量的循环会导致该指标和平均电池电位发生更明显的变化。在电池短路前,该指标和平均电池电位中始终会出现局部最小值/最大值,我们认为这可能表明失效前微观结构的崩溃。我们提出这个框架作为一种更稳健的方法来量化锂沉积均匀性,推动更安全、更长效的锂金属电池的发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6e5c/12305041/0694331a88be/pnas.2502518122fig01.jpg

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