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对采用软包装的方形锂离子电池快速容量衰减的综合研究。

Comprehensive study of rapid capacity fade in prismatic Li-ion cells with flexible packaging.

作者信息

Stravova Zuzana, Klvac Ondrej, Bana Jiri, Anothumakkool Bihag, Zikmund Tomas, Blazek Pavel, Kaiser Jozef, Kazda Tomas

机构信息

Central European Institute of Technology, Brno University of Technology, Brno, Czech Republic.

Department of Electrical and Electronic Technology, Faculty of Electrical Engineering and Communication, BUT, Technická 10, Brno, 616 00, Czech Republic.

出版信息

Sci Rep. 2024 Nov 18;14(1):28546. doi: 10.1038/s41598-024-77673-3.

DOI:10.1038/s41598-024-77673-3
PMID:39557954
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11573984/
Abstract

Prismatic lithium-ion batteries (LIBs) are considered promising electric energy sources in electromobility applications due to their efficient space utilization. However, their sensitivity to external and internal influences and reduced durability lead to inflation risk and potential explosions throughout their lifecycle. These critical processes are strongly influenced by the inner construction of the cell, especially concerning the coating and mechanical fixation. This study subjects a commercially available prismatic LIB cell to comprehensive, correlative analysis employing various imaging techniques. The inner structure of the entire cell is visualized non-destructively by X-ray computed tomography (CT), enabling the identification of critical design flaws prior to electrochemical cycling. Electrochemical cycling simulates the battery lifecycle, and the cell is subsequently disassembled in the fully charged state. The usage of the inert-gas transfer system allowed the preparation of Broad Ion Beam (BIB) electrodes cross-sections in a fully native state and for the first time to observe the tearing of graphite particles due to over-lithiation. Established region labeling system allowed to use CT and scanning electron microscopy (SEM) correlatively to identify critical regions. After 100 cycles, a 40% capacity loss was observed and event diagram describing deagradation mechanisms, related both to the cell design and to the processes occurring at high load, was created.

摘要

棱柱形锂离子电池(LIBs)因其高效的空间利用率,被认为是电动交通应用中很有前景的电能来源。然而,它们对外部和内部影响的敏感性以及耐久性的降低,导致在其整个生命周期中存在膨胀风险和潜在爆炸危险。这些关键过程受到电池内部结构的强烈影响,特别是在涂层和机械固定方面。本研究对市售的棱柱形LIB电池采用各种成像技术进行全面的关联分析。通过X射线计算机断层扫描(CT)对整个电池的内部结构进行无损可视化,从而在电化学循环之前识别关键设计缺陷。电化学循环模拟电池的生命周期,随后在充满电的状态下拆解电池。惰性气体传输系统的使用使得能够制备完全天然状态的宽离子束(BIB)电极横截面,并首次观察到由于过度锂化导致的石墨颗粒撕裂。已建立的区域标记系统允许相关地使用CT和扫描电子显微镜(SEM)来识别关键区域。在100次循环后,观察到容量损失40%,并创建了描述降解机制的事件图,该机制与电池设计以及高负载下发生的过程有关。

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本文引用的文献

1
Coupled Broad Ion Beam-Scanning Electron Microscopy (BIB-SEM) for polishing and three dimensional (3D) serial section tomography (SST).耦合宽束离子束-扫描电子显微镜(BIB-SEM)用于抛光和三维(3D)连续切片断层成像术(SST)。
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Nat Commun. 2020 Apr 29;11(1):2079. doi: 10.1038/s41467-020-15811-x.
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Investigating the evolving microstructure of lithium metal electrodes in 3D using X-ray computed tomography.
使用X射线计算机断层扫描技术三维研究锂金属电极不断演变的微观结构。
Phys Chem Chem Phys. 2017 Aug 23;19(33):22111-22120. doi: 10.1039/c7cp02872e.
4
Argon broad ion beam tomography in a cryogenic scanning electron microscope: a novel tool for the investigation of representative microstructures in sedimentary rocks containing pore fluid.低温扫描电子显微镜中的氩宽束离子断层扫描术:一种研究含流体质孔的沉积岩代表性微观结构的新工具。
J Microsc. 2013 Mar;249(3):215-35. doi: 10.1111/jmi.12011. Epub 2013 Jan 16.