集流器对锂电池石墨电极耦合电化学机械性能的影响。

IF 3.1 2区 化学 Q3 CHEMISTRY, PHYSICAL
Xiaolin Li, Jiahui Liu, Honghui Gu, Hainan Jiang, Linlin Song, Yaolong He, Dawei Li
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引用次数: 0

摘要

集流体是制造复合电极的主要部件之一,主要用于增强电极的机械稳定性,提高电极的性能和循环性能。在电化学反应过程中,锂的扩散会引起压应力,影响电池的机械性能、寿命和性能。因此,本研究分析了铜箔对电极机械响应和降解性能的影响。此外,还建立了一个数学模型来分析铜箔对电极应力-应变行为的影响。结果表明,石墨电极的应力和模量随着锂化过程呈非线性增长。基于这些发现,利用更薄、更顺从的电流收集器可以有效减轻电极内的平面应变和应力。因此,开发更薄、更柔软的铜箔可以同时提高下一代锂电池复合电极的机械性能和比密度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of current collector on the coupled electro-chemo-mechanical performance of graphite electrodes in LiBs.

The current collector, one of the main components in the manufacture of composite electrodes, is mainly used to enhance the mechanical stability and improve the performance and cycle performance of the electrodes. During the electrochemical reaction, the lithium diffusion can induce compressive stress and affect the mechanical performance, lifespan, and performance of batteries. Therefore, this study analyzed the influence of copper foil on the mechanical response and degradation performance of electrodes. In addition, a mathematical model was developed to analyze the effect of copper foil on the stress-strain behavior of the electrodes. The results indicated that the stress and modulus of the graphite electrodes have a non-linear increase with the lithiation process. Based on those findings, utilizing a thinner and more compliant current collector could effectively mitigate the in-plane strain and the stress within electrodes. Thus, developing a thinner and softer copper foil could simultaneously enhance the mechanical properties and specific density of composite electrodes for the next-generation LiBs.

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来源期刊
Journal of Chemical Physics
Journal of Chemical Physics 物理-物理:原子、分子和化学物理
CiteScore
7.40
自引率
15.90%
发文量
1615
审稿时长
2 months
期刊介绍: The Journal of Chemical Physics publishes quantitative and rigorous science of long-lasting value in methods and applications of chemical physics. The Journal also publishes brief Communications of significant new findings, Perspectives on the latest advances in the field, and Special Topic issues. The Journal focuses on innovative research in experimental and theoretical areas of chemical physics, including spectroscopy, dynamics, kinetics, statistical mechanics, and quantum mechanics. In addition, topical areas such as polymers, soft matter, materials, surfaces/interfaces, and systems of biological relevance are of increasing importance. Topical coverage includes: Theoretical Methods and Algorithms Advanced Experimental Techniques Atoms, Molecules, and Clusters Liquids, Glasses, and Crystals Surfaces, Interfaces, and Materials Polymers and Soft Matter Biological Molecules and Networks.
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