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Full-Field Fluorescence Mode Micro-XANES Imaging Using a Unique Energy Dispersive CCD Detector

机译:使用独特的能量色散CCD检测器的全场荧光模式Micro-XANES成像

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摘要

X-ray absorption near-edge structure (XANES) spectroscopy is a well-known nondestructive technique that allows for chemical state and local structure determination. Spatially resolved oxidation state imaging is possible performing full-field transmission mode XANES experiments, providing chemical state information on the illuminated sample area, but these experiments are limited to thin, concentrated samples. Here we present the use of a unique energy dispersive (ED) pnCCD detector, the SLcam, for full-field fluorescence mode XANES experiments, thereby significantly relaxing the constraints on sample thickness. Using this new detection methodology, spatially resolved chemical state information on millimeter-sized sample areas can be obtained with microscopic resolution in moderate measuring times (less than 15 h), obtaining a XANES profile for each of nearly 70 000 points in a single measurement without the need of scanning the sample through the beam. Besides a description of the use of this detector for micro-XANES applications, we also present the proof of concept for fluorescence mode micro-XANES using a Fe~0/Fe_2O_3 model sample and a Nitisol soil sample, which was measured to obtain iron chemical state distribution information.
机译:X射线吸收近边缘结构(XANES)光谱是一种众所周知的无损技术,可以确定化学状态和局部结构。空间分辨的氧化态成像可以执行全场透射模式XANES实验,在被照样品区域提供化学状态信息,但这些实验仅限于稀薄的浓缩样品。在这里,我们介绍了使用独特的能量色散(ED)pnCCD检测器SLcam进行全场荧光模式XANES实验,从而显着放松了对样品厚度的限制。使用这种新的检测方法,可以在中等的测量时间内(少于15小时)以微观分辨率获得毫米大小样品区域上的空间分辨化学状态信息,而一次测量就获得了近7,000个点的XANES分布图,而无需进行任何测量需要通过光束扫描样品。除了描述该检测器在微型XANES应用中的使用方法,我们还介绍了使用Fe〜0 / Fe_2O_3模型样品和Nitisol土壤样品对荧光模式微型XANES进行概念验证,并对其进行测量以获得铁化学状态分配信息。

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