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离子束溅射中性原子的共振电离质谱法,用于微颗粒中钚的元素和同位素选择性分析。

Resonance ionization mass spectrometry of ion beam sputtered neutrals for element- and isotope-selective analysis of plutonium in micro-particles.

机构信息

European Commission Joint Research Centre, Institute for Transuranium Elements, P.O. Box 2340, 76125, Karlsruhe, Germany.

出版信息

Anal Bioanal Chem. 2009 Nov;395(6):1911-8. doi: 10.1007/s00216-009-2906-6. Epub 2009 Jun 26.

Abstract

Micro-particles containing actinides are of interest for risk assessments of contaminated areas, nuclear forensic analyses, and IAEA as well as Euratom safeguards programs. For their analysis, secondary ion mass spectrometry (SIMS) has been established as the state-of-the-art standard technique. In the case of actinide mixtures within the particles, however, SIMS suffers from isobaric interferences (e.g., (238)U/(238)Pu, (241)Am/(241)Pu). This can be eliminated by applying resonance ionization mass spectrometry which is based on stepwise resonant excitation and ionization of atoms with laser light, followed by mass spectrometric detection of the produced ions, combining high elemental selectivity with the analysis of isotopic compositions. This paper describes the instrumental modifications for coupling a commercial time-of-flight (TOF)-SIMS apparatus with three-step resonant post-ionization of the sputtered neutrals using a high-repetition-rate (kHz) Nd:YAG laser pumped tunable titanium:sapphire laser system. Spatially resolved ion images obtained from actinide-containing particles in TOF-SIMS mode demonstrate the capability for isotopic and spatial resolution. Results from three-step resonant post-ionization of bulk Gd and Pu samples successfully demonstrate the high elemental selectivity of this process.

摘要

含有锕系元素的微粒对于污染地区的风险评估、核取证分析以及国际原子能机构和欧洲原子能共同体的保障计划具有重要意义。对于这些微粒中的锕系元素混合物,二次离子质谱(SIMS)已被确立为最先进的标准技术。然而,SIMS 受到同量异位素干扰(例如,(238)U/(238)Pu、(241)Am/(241)Pu)的限制。这可以通过应用共振电离质谱来消除,该方法基于用激光逐步激发和电离原子,然后通过质谱检测产生的离子,结合高元素选择性和同位素组成分析。本文描述了将商业飞行时间(TOF)-SIMS 仪器与使用高重复率(kHz)Nd:YAG 激光泵浦可调谐钛蓝宝石激光系统对溅射中性原子进行三步共振后电离相耦合的仪器改进。从 TOF-SIMS 模式下含有锕系元素的微粒中获得的空间分辨离子图像证明了该方法具有同位素和空间分辨率的能力。对大块 Gd 和 Pu 样品进行三步共振后电离的结果成功地证明了该过程的高元素选择性。

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