论文标题
X射线实验和建模对理解石墨电极异质静电的贡献
Contribution of X-ray experiments and modeling to the understanding of the heterogeneous lithiation of graphite electrodes
论文作者
论文摘要
锂离子电池中电势和锂含量的分布高度影响其性能和耐用性。在高能量密度或高电流时循环的厚电极中,锂分布的异质性有所增加。为了优化电极和电池设计,对于探测锂浓度梯度跨电极深度至关重要,但也要预测其发生和幅度与材料特性的函数。在这里,我们遵循使用$ 1〜μm $ copitimus Synchrotron X射线梁的$ 80〜μm $厚的多孔石墨电极的锂分布。锂去插入期间单个li $ _x $ c $ _6 $相的顺序形成是从X射线衍射模式中提取的,从而使锂浓度跨电极厚度量化。分析异质性随时间的函数的演变,我们恢复了用多孔电极模型预测的引人注目的特征,包括锂的均质和异质分布的连续性。但是,在高化学计量学下获得明显的差异,其均匀分布比最初预测的要多得多。重新访问多孔电极模型中传输和动力学传输之间的相互作用,我们建议在LIC $ _6 $/LIC $ _ {12} $相位过渡期间,锂(DE)插入的动力学高度降低。
Distributions of potential and lithium content inside lithium ion batteries highly affects their performance and durability. An increased heterogeneity of the lithium distribution is expected in thick electrodes with high energy densities or cycling at high currents. To optimize electrodes and cells designs, it is crucial to probe lithium concentration gradients across the depth of the electrode, but also to predict their occurrence and magnitude as a function of materials properties. Here, we follow the lithium distribution across a $80~μm$ thick porous graphite electrode using a $1~μm$ focused synchrotron X-ray beam. The sequential formation of the individual Li$_x$C$_6$ phases during lithium de-insertion is extracted from X-ray diffraction patterns, allowing the quantification of lithium concentration across the electrode thickness. Analyzing the evolution of heterogeneities as a function of time, we recover the striking features we predicted with a porous electrode model, including the succession of homogeneous and heterogeneous distributions of lithium. However, a clear difference is obtained at high stoichiometry, with a much more homogeneous distribution than initially predicted. Revisiting the interplay between transport and kinetic transfers limitations in the porous electrode model, we suggest that the kinetics of lithium (de)-insertion is highly reduced during the LiC$_6$/LiC$_{12}$ phase transition.