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Characterising the structural properties of polymer separators for lithium-ion batteries in 3D using phase contrast X-ray microscopy

机译:使用相差X射线显微镜表征3D锂离子电池聚合物隔膜的结构特性

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摘要

Separators are an integral component for optimising performance and safety of lithium-ion batteries; therefore, a clear understanding of how their microstructure affects cell performance and safety is crucial. Phase contrast X-ray microscopy is used here to capture the microstructures of commercial monolayer, tri-layer, and ceramic-coated lithium-ion battery polymer separators. Spatial variations in key structural parameters, including porosity, tortuosity factor and pore size distribution, are determined through the application of 3D quantification techniques and stereology. The architectures of individual layers in multi-layer membranes are characterised, revealing anisotropy in porosity, tortuosity factor and mean pore size of the three types of separator. Detailed structural properties of the individual layers of multi-layered membranes are then related with their expected effect on safety and rate capability of cells.
机译:隔板是优化锂离子电池性能和安全性不可或缺的组件。因此,清楚了解其微观结构如何影响电池性能和安全性至关重要。相衬X射线显微镜用于捕获商用单层,三层和陶瓷涂层锂离子电池聚合物隔膜的微观结构。关键结构参数的空间变化(包括孔隙度,曲折系数和孔径分布)是通过3D量化技术和立体学方法确定的。表征了多层膜中各层的结构,揭示了三种类型隔板的孔隙率,曲折系数和平均孔径的各向异性。然后将多层膜的各个层的详细结构特性与其对细胞安全性和速率能力的预期影响相关。

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