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Phase-field study of surface irregularities of a cathode particle during intercalation

机译:嵌入期间阴极粒子表面不规则性的相场研究

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During the charging and discharging process, lithium manganese oxide spinel, which is a cathodic electrode material of lithium-ion batteries, shows a coexistence of Li-rich and Li-poor phases. The two-phase coexistence is a very important source of capacity fade in lithium-ion batteries. To enhance the understanding of the degradation mechanism, the mathematical modeling of phase separation becomes an important tool. Furthermore, the particle shape polydispersity should be considered to obtain simulated results that are closer to the real kinetics. The present work focuses on the mesoscopic effect of the surface curvature of the cathodic particle, by using the classical Cahn-Hilliard equation. Near the convex region of the particle surface, we find that more sites are available for the applied flux than for the sites that host lithium ions. As a consequence, the onset of phase separation preferentially occurs in high curvature regions of the particle. Furthermore, the elliptical particle with a higher aspect ratio is subjected to the onset of the phase separation, prior to the lower ones. Finally, the effect of variation of parameters on charge dynamics is discussed.
机译:在充电和放电过程中,锂锰氧化物尖晶石,其是锂离子电池的阴极电极材料,显示出富富和锂差相的共存。两相共存是锂离子电池中的容量淡化的非常重要的来源。为了增强对劣化机制的理解,相分离的数学建模成为重要的工具。此外,应考虑颗粒形状多分散性以获得更接近真实动力学的模拟结果。本作者通过使用经典的Cahn-Hilliard方程,侧重于阴极颗粒的表面曲率的介观效应。在颗粒表面的凸起区域附近,我们发现施加的助焊剂的透射位数比宿主锂离子的部位更多。结果,期间优先发生在颗粒的高曲率区域中。此外,在下部的椭圆形颗粒具有较高纵横比的椭圆颗粒。最后,讨论了对充电动力学的参数变化的影响。

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