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Atom Probe Mass Spectrometry of Uranium Isotopic Reference Materials

机译:原子探针质谱铀同位素参考材料

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Atom probe tomography (APT)-based isotopic analyses are becoming increasingly attractive for analysis applications requiring small volumes of material and sub-micrometer length scales, such as isotope geochemistry, nuclear safety, and materials science. However, there is an open question within the atom probe community as to the reliability of atom probe isotopic and elemental analyses. Using our proposed analysis guidelines, in conjunction with an empirical calibration curve and a machine learning-based adaptive peak fitting algorithm, we demonstrate accurate and repeatable uranium isotopic analyses, via atom probe mass spectrometry, on U(3)O(8 )isotopic reference materials. By using isotopic reference materials, each measured isotopic abundance value could be directly compared to a known certified reference value to permit a quantitative statement of accuracy. The isotopic abundance measurements for U-235 and U-238 in each individual APT sample were consistently within +/- 1.5% relative to the known reference values. The accuracy and repeatability are approaching values consistent with measurements limited primarily by Poisson counting statistics, i.e., the number of uranium atoms recorded.
机译:基于原子探测断层扫描(APT)的同位素分析对于需要小体积的材料和亚微米长度尺度的分析应用越来越有吸引力,例如同位素地球化学,核安全和材料科学。然而,Atom探测社区内的开放问题是原子探针同位素和元素分析的可靠性。使用我们所提出的分析指南,与经验校准曲线和基于机器学习的自适应峰值拟合算法一起,我们证明了通过原子探针质谱,U(3)O(8)同位素参考的准确和可重复的铀同位素分析材料。通过使用同位素参考材料,可以与已知的认证参考值相比,每个测量的同位素丰度值可以直接与已知的认证的参考值相比,以允许定量准确性陈述。相对于已知的参考值,每个单独的APT样品中U-235和U-238的同位素丰富测量值始终如一的+/- 1.5%。准确性和可重复性正在接近与主要由Poisson计数统计限制的测量值一致的值,即记录的铀原子的数量。

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