论文标题

锂离子电池老化轨迹中的“膝盖”

"Knees" in lithium-ion battery aging trajectories

论文作者

Attia, Peter M., Bills, Alexander, Planella, Ferran Brosa, Dechent, Philipp, Reis, Gonçalo dos, Dubarry, Matthieu, Gasper, Paul, Gilchrist, Richard, Greenbank, Samuel, Howey, David, Liu, Ouyang, Khoo, Edwin, Preger, Yuliya, Soni, Abhishek, Sripad, Shashank, Stefanopoulou, Anna G., Sulzer, Valentin

论文摘要

锂离子电池可以持续多年,但有时会表现出快速的非线性降解,从而严重限制了电池寿命。在这项工作中,我们回顾了锂离子电池老化轨迹中“膝盖”的先前工作。我们首先回顾了膝盖和三类“内部状态轨迹”(称为滚雪球,隐藏和阈值轨迹)的定义,可能会引起膝盖。然后,我们讨论六个膝盖“途径”,包括锂电镀,电极饱和度,电阻生长,电解质和添加剂耗竭,渗透限制的连接性和机械变形 - 其中一些具有内部状态轨迹,并带有电化学上无法检测到的信号。我们还确定了膝盖的关键设计和使用敏感性。最后,我们讨论了膝盖建模和预测的挑战和机会。我们的发现说明了锂离子电池降解的复杂性和微妙性,并可以帮助学术和工业努力改善电池寿命。

Lithium-ion batteries can last many years but sometimes exhibit rapid, nonlinear degradation that severely limits battery lifetime. In this work, we review prior work on "knees" in lithium-ion battery aging trajectories. We first review definitions for knees and three classes of "internal state trajectories" (termed snowball, hidden, and threshold trajectories) that can cause a knee. We then discuss six knee "pathways", including lithium plating, electrode saturation, resistance growth, electrolyte and additive depletion, percolation-limited connectivity, and mechanical deformation -- some of which have internal state trajectories with signals that are electrochemically undetectable. We also identify key design and usage sensitivities for knees. Finally, we discuss challenges and opportunities for knee modeling and prediction. Our findings illustrate the complexity and subtlety of lithium-ion battery degradation and can aid both academic and industrial efforts to improve battery lifetime.

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