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XANES microimaging and tomography

机译:XANES显微成像和断层扫描

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摘要

In chemistry, X-ray absorption near-edge spectroscopy (XANES) is a well-known and established technique. By scanning the X-ray energy in the vicinity (50-100 eV) of the absorption edge of an element, information can be obtained about the oxidation state of the probed atoms. The (conventional) technique mainly employed until now applies for homogeneous, specifically prepared flat samples where the measured signal can be considered as the average over the whole irradiated volume. This restriction for samples is partially released when the XANES method is combined with imaging techniques. 2-D resolved data is acquired using area detectors or by scanning with a focussed beam. X-ray absorption tomography is a method of choice for investigating the 3D structure of objects and its dual energy version is used for getting information about the 3D distribution of a given element within the sample. Although the combination of XANES and tomography seems to be a natural extension of dual-energy tomography, in practice several experimental problems have to be overcome in order to obtain useable data. In the following we describe the results of XANES imaging and tomography obtained measuring a phantom sample of pure molybdenum compounds using a FreLoN 2000 camera system at the ESRF undulator beamline ID22. This system allowed making volume resolved distinctions between different oxidation states with spatial resolution in the micrometer range.
机译:在化学领域,X射线吸收近边缘光谱法(XANES)是众所周知的成熟技术。通过扫描元素吸收边缘附近(50-100 eV)的X射线能量,可以获得有关被探测原子的氧化态的信息。迄今为止,主要采用的(常规)技术适用于均质的,专门准备的扁平样品,在这种情况下,可以将测得的信号视为整个辐照量的平均值。当XANES方法与成像技术结合使用时,对样品的这一限制将部分解除。使用区域检测器或通过聚焦光束扫描来获取二维分辨数据。 X射线吸收断层扫描是研究对象3D结构的一种选择方法,其双能版本用于获取有关样品中给定元素3D分布的信息。尽管XANES和层析成像技术的结合似乎是双能层析成像技术的自然延伸,但在实践中必须克服一些实验问题才能获得有用的数据。在下文中,我们描述了使用FreRFN 2000摄影机系统在ESRF波动器光束线ID22上测量纯钼化合物的幻像样品而获得的XANES成像和层析成像的结果。该系统允许以微米范围内的空间分辨率在不同氧化态之间进行体积分辨的区分。

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