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Thin-film electrodes for high-capacity lithium-ion batteries: Influence of phase transformations on stress

机译:大容量锂离子电池薄膜电极:相变对应力的影响

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摘要

In this study we revisit experiments by Sethuraman et al. [J. Power Sources, 195, 5062 (2010)] on the stress evolution during the lithiation/delithiation cycle of a thin film of amorphous silicon. Based on recent work that show a two-phase process of lithiation of amorphous silicon, we formulate a phase-field model coupled to elasticity in the framework of Larché-Cahn. Using an adaptive nonlinear multigrid algorithm for the finite-volume discretization of this model, our two-dimensional numerical simulations show the formation of a sharp phase boundary between the lithiated and the amorphous silicon that continues to move as a front through the thin layer. We show that our model captures the non-monotone stress loading curve and rate dependence, as observed in recent experiments and connects characteristic features of the curve with the stucture formation within the layer. We take advantage of the thin film geometry and study the corresponding one-dimensional model to establish the dependence on the material parameters and obtain a comprehensive picture of the behaviour of the system.
机译:在这项研究中,我们将回顾Sethuraman等人的实验。 [J. Power Sources,195,5062(2010)],讨论了非晶硅薄膜的锂化/去锂化循环过程中的应力演化。基于显示非晶硅锂化的两相过程的最新工作,我们在Larché-Cahn框架内建立了耦合弹性的相场模型。使用自适应非线性多重网格算法对该模型进行有限体积离散化,我们的二维数值模拟显示了在锂化硅和非晶硅之间形成尖锐的相界,并继续向前移动穿过薄层。我们表明,我们的模型捕获了非单调应力加载曲线和速率相关性,如最近的实验所观察到的,并将该曲线的特征与层内结构的形成联系起来。我们利用薄膜的几何形状,研究相应的一维模型,以建立对材料参数的依赖性,并获得有关系统行为的全面描述。

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