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在光散射二级光源(PLS-II)上开发 XANES 纳米显微镜。

Development of XANES nanoscopy on BL7C at PLS-II.

机构信息

Pohang Accelerator Laboratory, POSTECH, Jigokro 127, Pohang, Kyungbuk 37637, South Korea.

出版信息

J Synchrotron Radiat. 2020 Mar 1;27(Pt 2):545-550. doi: 10.1107/S160057752000082X. Epub 2020 Feb 20.

Abstract

X-ray absorption near-edge structure (XANES) imaging is a powerful tool to visualize the chemical state distribution of transition-metal-based materials at synchrotron radiation facilities. In recent years, the electrochemical working rechargeable battery has been the most studied material in XANES imaging owing to the large increase of portable electronics and electric vehicles. This work acknowledges the importance of battery analysis and has developed the XANES imaging system on BL7C at Pohang Light Source-II (PLS-II). BL7C employs an undulator taper configuration to obtain an energy band >130 eV near the K-absorption edge of the target element with a minimum energy interval >0.2 eV. While measuring energy-dependent images, the zone plate translation maintains the best focus, and then various data processes such as background correction, image registration and clustering allow single XANES spectrum extraction and chemical distribution mapping. Here, the XANES imaging process is described, the XANES spectrum quality is identified and the chemical states of the partially charged cathode material used in lithium-ion batteries as an application example are examined.

摘要

X 射线吸收近边结构(XANES)成像是一种在同步辐射设施中可视化过渡金属基材料化学状态分布的强大工具。近年来,由于便携式电子产品和电动汽车的大量增加,电化学可充电电池已成为 XANES 成像中研究最多的材料。这项工作认识到电池分析的重要性,并在浦项光源-II(PLS-II)的 BL7C 上开发了 XANES 成像系统。BL7C 采用了渐变器锥配置,在目标元素的 K 吸收边附近获得了>130 eV 的能带,最小能量间隔>0.2 eV。在测量能量相关图像时,波带板平移保持最佳焦点,然后进行各种数据处理,如背景校正、图像配准和聚类,允许提取单个 XANES 光谱和化学分布映射。本文描述了 XANES 成像过程,确定了 XANES 光谱的质量,并以锂离子电池中部分充电的阴极材料作为应用实例,检查了其化学状态。

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