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首页> 外文期刊>ACS applied materials & interfaces >Three-Dimensional Reconstruction and Analysis of All-Solid Li-Ion Battery Electrode Using Synchrotron Transmission X-ray Microscopy Tomography
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Three-Dimensional Reconstruction and Analysis of All-Solid Li-Ion Battery Electrode Using Synchrotron Transmission X-ray Microscopy Tomography

机译:使用Synchrotron传输X射线显微镜断层扫描的全固体锂离子电池电极的三维重建与分析

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摘要

A synchrotron transmission X-ray microscopy tomography system with a spatial resolution of 58.2 nm at the Advanced Photon Source was employed to obtain three-dimensional morphological data of all-solid Li-ion battery electrodes. The three-phase electrode was fabricated from a 47:47:6 (wt %) mixture of Li(Ni1/3Mn1/3Co1/3)O-2 as active material, Li1.3Ti1.7Al0.3(PO4)(3) as Li-ion conductor, and Super-P carbon as electron conductor. The geometric analysis show that particle-based all-solid Li-ion battery has serious contact interface problem which significantly impact the Li-ion transport and intercalation reaction in the electrode, leading to low capacity, poor rate capability and cycle life.
机译:采用了在高级光子源处具有58.2nm的空间分辨率的同步发射X射线显微镜系统,以获得全固体锂离子电池电极的三维形态学数据。 三相电极由47:47:6(wt%)的Li(Ni1 / 3Mn1 / 3CO1 / 3)O-2混合物为活性物质,Li1.3Ti1.7al0.3(PO4)(3) 作为锂离子导体,和超级碳作为电子导体。 几何分析表明,粒子基全固体锂离子电池具有严重的接触界面问题,其显着影响电极中的锂离子传输和嵌入反应,导致低容量,速率不足和循环寿命。

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