Suppr超能文献

用于轻元素分析的共聚焦微X射线荧光光谱仪。

Confocal micro-x-ray fluorescence spectrometer for light element analysis.

作者信息

Smolek S, Pemmer B, Fölser M, Streli C, Wobrauschek P

机构信息

Atominstitut, Vienna University of Technology, Stadionallee 2, 1020 Vienna, Austria.

出版信息

Rev Sci Instrum. 2012 Aug;83(8):083703. doi: 10.1063/1.4744934.

Abstract

An existing micro-x-ray fluorescence (micro-XRF) spectrometer designed for light element analysis (6 ≤ Z ≤ 14) has been extended to confocal geometry: a second polycapillary x-ray optic has been introduced in front of the energy dispersive x-ray detector. New piezo positioners for optimum alignment of both optics have been installed inside the vacuum chamber. The spectrometer offers now the possibility of true 3D elemental analysis in the micrometer regime. Depth resolution varies between 100 μm at 1 keV fluorescence energy (Na-Kα) and 30 μm for 17.5 keV (Mo). To further extend analytical capabilities a second x-ray tube with a Rh anode has been acquired to supplement to existing Mo anode tube. Lower limits of detection have been determined to be in the ppm region for confocal geometry. The spectrometer has been characterized and tested using different samples. Furthermore, results have been compared with SR micro-XRF to show the capabilities and limitations of this spectrometer.

摘要

一台现有的用于轻元素分析(6≤Z≤14)的微X射线荧光(micro-XRF)光谱仪已扩展到共聚焦几何结构:在能量色散X射线探测器前引入了第二个多毛细管X射线光学元件。用于使两个光学元件实现最佳对准的新型压电定位器已安装在真空室内。该光谱仪现在提供了在微米尺度上进行真正三维元素分析的可能性。深度分辨率在1 keV荧光能量(Na-Kα)时为100μm,在17.5 keV(Mo)时为30μm。为了进一步扩展分析能力,已购置了第二个带有Rh阳极的X射线管,以补充现有的Mo阳极管。已确定共聚焦几何结构的检测下限在ppm范围内。该光谱仪已使用不同样品进行了表征和测试。此外,已将结果与同步辐射微X射线荧光分析进行比较,以展示该光谱仪的能力和局限性。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验