Space Research and Planetology, Institute of Physics, Sidlerstrasse 5, University Bern, 3012 Bern, Switzerland.
Anal Bioanal Chem. 2011 Feb;399(6):2185-200. doi: 10.1007/s00216-010-4411-3. Epub 2010 Nov 25.
The performance of a laser ablation mass analyser designed for in-situ exploration of the chemical composition of planetary surfaces has been investigated. The instrument measures the elemental and isotopic composition of raw solid materials with high spatial resolution. The initial studies were performed on NIST standard materials using IR laser irradiance (< 1 GW cm(-2)) at which a high temporal stability of ion formation and sufficiently low sample consumption was achieved. Measurements of highly averaged spectra could be performed with typical mass resolution of m/Δm ≈ 600 in an effective dynamic range spanning seven decades. Sensitive detection of several trace elements can be achieved at the ~ ppm level and lower. The isotopic composition is usually reproduced with 1% accuracy, implying good performance of the instrument for quantitative analysis of the isotopic fractionation effects caused by natural processes. Using the IR laser, significant elemental fractionation effects were observed for light elements and elements with a high ionization potential. Several diatomic clusters of major and minor elements could also be measured, and sometimes these interfere with the detection of trace elements at the same nominal mass. The potential of the mass analyser for application to sensitive detection of elements and their isotopes in realistic samples is exemplified by measurements of minerals. The high resolution and large dynamic range of the spectra makes detection limits of ~100 ppb possible.
一种用于原位探测行星表面化学成分的激光烧蚀质谱分析仪的性能已得到研究。该仪器具有高空间分辨率,可测量原始固体材料的元素和同位素组成。最初的研究是在 NIST 标准物质上进行的,使用的红外激光辐照度(<1GW/cm(-2))可以实现离子形成的高时间稳定性和足够低的样品消耗。使用典型的质量分辨率 m/Δm ≈ 600,可以在跨越七个数量级的有效动态范围内进行高度平均的光谱测量。可以在 ~ppm 及更低的水平上实现对几个痕量元素的灵敏检测。同位素组成通常以 1%的精度再现,这意味着该仪器在定量分析自然过程引起的同位素分馏效应方面具有良好的性能。使用红外激光,轻元素和高电离势元素的元素分馏效应显著。主要和次要元素的几个双原子团簇也可以被测量,有时这些团簇会干扰相同标称质量的痕量元素的检测。该质谱仪在实际样品中对元素及其同位素的灵敏检测中的应用潜力通过对矿物的测量得到了例证。光谱的高分辨率和大动态范围使得检测限达到 ~100ppb 成为可能。