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浦项加速器实验室二期装置光谱X射线纳米成像光束线BL 7C sXNI的早期调试结果。

Early commissioning results for spectroscopic X-ray Nano-Imaging Beamline BL 7C sXNI at PLS-II.

作者信息

Lee Sangsul, Kwon Ik Hwan, Kim Jae Young, Yang Sung Sun, Kang Sechang, Lim Jun

机构信息

Industrial Technology Convergence Center, Pohang Light Source, Pohang 37673, South Korea.

Department of Physics, POSTECH, Pohang 37673, South Korea.

出版信息

J Synchrotron Radiat. 2017 Nov 1;24(Pt 6):1276-1282. doi: 10.1107/S1600577517013972. Epub 2017 Oct 18.

Abstract

For spectral imaging of chemical distributions using X-ray absorption near-edge structure (XANES) spectra, a modified double-crystal monochromator, a focusing plane mirrors system and a newly developed fluorescence-type X-ray beam-position monitoring and feedback system have been implemented. This major hardware upgrade provides a sufficiently stable X-ray source during energy scanning of more than hundreds of eV for acquisition of reliable XANES spectra in two-dimensional and three-dimensional images. In recent pilot studies discussed in this paper, heavy-metal uptake by plant roots in vivo and iron's phase distribution in the lithium-iron-phosphate cathode of a lithium-ion battery have been imaged. Also, the spatial resolution of computed tomography has been improved from 70 nm to 55 nm by means of run-out correction and application of a reconstruction algorithm.

摘要

为了利用X射线吸收近边结构(XANES)光谱对化学分布进行光谱成像,已采用了一种改进的双晶单色仪、一个聚焦平面镜系统以及一个新开发的荧光型X射线束位置监测和反馈系统。这一重大硬件升级在数百电子伏特以上的能量扫描过程中提供了足够稳定的X射线源,以便在二维和三维图像中获取可靠的XANES光谱。在本文讨论的近期初步研究中,对植物根系在体内吸收重金属以及锂离子电池磷酸铁锂阴极中铁的相分布进行了成像。此外,通过跳动校正和应用重建算法,计算机断层扫描的空间分辨率已从70纳米提高到55纳米。

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