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用于兵库SPring-8 24XU光束线原位结构分析的大气相干X射线衍射成像

Atmospheric coherent X-ray diffraction imaging for in situ structural analysis at SPring-8 Hyogo beamline BL24XU.

作者信息

Takayama Yuki, Takami Yuki, Fukuda Keizo, Miyagawa Takamasa, Kagoshima Yasushi

机构信息

Graduate School of Material Science, University of Hyogo, 3-2-1 Kouto, Kamigori, Ako, Hyogo 678-1297, Japan.

出版信息

J Synchrotron Radiat. 2018 Jul 1;25(Pt 4):1229-1237. doi: 10.1107/S1600577518006410.

Abstract

Coherent X-ray diffraction imaging (CXDI) is a promising technique for non-destructive structural analysis of micrometre-sized non-crystalline samples at nanometre resolutions. This article describes an atmospheric CXDI system developed at SPring-8 Hyogo beamline BL24XU for in situ structural analysis and designed for experiments at a photon energy of 8 keV. This relatively high X-ray energy enables experiments to be conducted under ambient atmospheric conditions, which is advantageous for the visualization of samples in native states. The illumination condition with pinhole-slit optics is optimized according to wave propagation calculations based on the Fresnel-Kirchhoff diffraction formula so that the sample is irradiated by X-rays with a plane wavefront and high photon flux of ∼1 × 10 photons/16 µmø(FWHM)/s. This work demonstrates the imaging performance of the atmospheric CXDI system by visualizing internal voids of sub-micrometre-sized colloidal gold particles at a resolution of 29.1 nm. A CXDI experiment with a single macroporous silica particle under controlled humidity was also performed by installing a home-made humidity control device in the system. The in situ observation of changes in diffraction patterns according to humidity variation and reconstruction of projected electron-density maps at 5.2% RH (relative humidity) and 82.6% RH at resolutions of 133 and 217 nm, respectively, were accomplished.

摘要

相干X射线衍射成像(CXDI)是一种很有前景的技术,可用于对微米级非晶态样品进行纳米分辨率的无损结构分析。本文介绍了在兵库县SPring-8的BL24XU光束线开发的一种大气CXDI系统,用于原位结构分析,并设计用于在8 keV的光子能量下进行实验。这种相对较高的X射线能量使得实验能够在环境大气条件下进行,这有利于对天然状态的样品进行可视化。基于菲涅耳-基尔霍夫衍射公式的波传播计算对针孔狭缝光学元件的照明条件进行了优化,以便样品被具有平面波前和~1×10光子/16 µmø(半高宽)/秒的高光子通量的X射线照射。这项工作通过以29.1 nm的分辨率可视化亚微米级胶体金颗粒的内部空隙,展示了大气CXDI系统的成像性能。通过在系统中安装自制的湿度控制装置,还对单个大孔二氧化硅颗粒在受控湿度下进行了CXDI实验。分别在5.2%相对湿度(RH)和82.6%相对湿度下,以133和217 nm的分辨率完成了根据湿度变化对衍射图案变化的原位观察以及投影电子密度图的重建。

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