论文标题
从锂离子电池中阴极的层析成像图数据重建碳调节域的不同方法的定量比较及其对电化学性能的影响
Quantitative comparison of different approaches for reconstructing the carbon-binder domain from tomographic image data of cathodes in lithium-ion batteries and its influence on electrochemical properties
论文作者
论文摘要
众所周知,碳调节域(CBD)的空间分布为进一步优化锂离子电池提供了巨大的潜力。但是,从同步器断层扫描获得的层合图像数据中重建CBD是一项挑战。在本文中,我们考虑了两种不同的阴极的三个阶段的3D图像数据分为三个阶段的方法,即活动材料,CBD和孔。更确切地说,我们专注于全球阈值,基于EDX数据的局部闭合方法,K-均值聚类方法以及基于神经网络的程序,该方法已通过相关显微镜训练,即基于Synchrotrotrons shorogrotrons shormotogron和FIB-SEM数据获得的数据,代表了同一电子电极。我们量化了考虑的分割方法对形态特征以及通过空间分辨的传输模拟所产生的性能的影响。此外,我们使用实验确定的电化学特性来确定CBD有效运输参数的适当范围。开发的方法应用于两个不同制造的阴极,即两层的超厚的非结构化阴极和两层阴极,两层的CBD含量不同。这种比较阐明了特定的结构概念对阴极3D微结构的影响。
It is well known that the spatial distribution of the carbon-binder domain (CBD) offers a large potential to further optimize lithium-ion batteries. However, it is challenging to reconstruct the CBD from tomographic image data obtained by synchrotron tomography. In the present paper, we consider several approaches to segment 3D image data of two different cathodes into three phases, namely active material, CBD and pores. More precisely, we focus on global thresholding, a local closing approach based on EDX data, a k-means clustering method, and a procedure based on a neural network that has been trained by correlative microscopy, i.e., based on data gained by synchrotron tomography and FIB-SEM data representing the same electrode. We quantify the impact of the considered segmentation approaches on morphological characteristics as well as on the resulting performance by spatially-resolved transport simulations. Furthermore, we use experimentally determined electrochemical properties to identify an appropriate range for the effective transport parameter of the CBD. The developed methodology is applied to two differently manufactured cathodes, namely an ultra-thick unstructured cathode and a two-layer cathode with varying CBD content in both layers. This comparison elucidates the impact of a specific structuring concept on the 3D microstructure of cathodes.