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共聚焦显微X射线荧光分析用于对结构化和不均匀样品进行无损检测。

Confocal micro X-ray fluorescence analysis for the non-destructive investigation of structured and inhomogeneous samples.

作者信息

Heimler Korbinian, Gottschalk Christine, Vogt Carla

机构信息

Institute of Analytical Chemistry, TU Bergakademie Freiberg, Leipziger Str. 29, 09599, Freiberg, Germany.

AMINO GmbH, An der Zucker-Raffinerie 9, 38373, Frellstedt, Germany.

出版信息

Anal Bioanal Chem. 2023 Sep;415(21):5083-5100. doi: 10.1007/s00216-023-04829-x. Epub 2023 Jul 24.

Abstract

Confocal micro X-ray fluorescence (CMXRF) spectroscopy is a non-destructive, depth-resolved, and element-specific technique that is used to analyze the elemental composition of a sample. For this, a focused beam of mono- or polychromatic X-rays is applied to excite the atoms in the sample, causing them to emit fluorescence radiation which is detected with focusing capillary optics. The confocal design of the instrument allows for depth-resolved analysis, in most cases with a resolution in the lower micrometer dimension after collecting X-rays from a predefined volume within the sample. The element-specific nature of the technique allows information to be obtained about the presence and concentration of specific elements in this volume. This makes CMXRF spectroscopy a valuable tool for a wide range of applications, especially when samples with an inhomogeneous distribution of elements and a relatively light matrix have to be analyzed, which are typical examples in materials science, geology, and biology. The technique is also commonly used in the art and archaeology fields to analyze the elemental composition of historical artifacts and works of art, helping to provide valuable insights into their provenance, composition, and making. Recent technical developments to increase sensitivity and efforts to improve quantification in three-dimensional samples will encourage wider use of this method across a multitude of fields of application in the near future. Confocal micro X-ray fluorescence (CMXRF) is based on the confocal overlap of two polycapillary lens foci, creating a depth-sensitive and non-destructive probing volume. Three-dimensional resolved element distribution images can be obtained by measuring the fluorescence intensity as function of the three-dimensional position.

摘要

共聚焦微X射线荧光(CMXRF)光谱学是一种无损、深度分辨且元素特异性的技术,用于分析样品的元素组成。为此,应用聚焦的单色或多色X射线束来激发样品中的原子,使其发射荧光辐射,并用聚焦毛细管光学器件进行检测。该仪器的共聚焦设计允许进行深度分辨分析,在大多数情况下,从样品内的预定义体积收集X射线后,分辨率可达较低的微米尺寸。该技术的元素特异性使得能够获得有关该体积中特定元素的存在和浓度的信息。这使得CMXRF光谱学成为广泛应用的有价值工具,特别是当需要分析元素分布不均匀且基质相对较轻的样品时,这在材料科学、地质学和生物学中是典型例子。该技术也常用于艺术和考古领域,以分析历史文物和艺术品的元素组成,有助于深入了解它们的出处、组成和制作工艺。近期提高灵敏度的技术发展以及在三维样品中改进定量分析的努力,将促使该方法在不久的将来在众多应用领域中得到更广泛的使用。共聚焦微X射线荧光(CMXRF)基于两个多毛细管透镜焦点的共聚焦重叠,创建一个深度敏感且无损的探测体积。通过测量作为三维位置函数的荧光强度,可以获得三维分辨的元素分布图像。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dbaa/10404190/d662a74a98e2/216_2023_4829_Fig1_HTML.jpg

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