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A new approach to improving the accuracy of elemental analysis in laser mass spectrometry

机译:一种提高激光质谱中元素分析准确性的新方法

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摘要

It is shown that the main reason affecting the accuracy and reproducibility of the elemental analysis of solids with a laser source of ions is the difference in the ionization cross sections of different elements in the generation of laser plasma. Computer modeling was carried out for the evaporation of the sample and generation of laser plasma at different values of laser power density. The aim of modelling was to determine the cause of the low accuracy of analysis by direct selection of ions from the plasma. The researches have shown that we cannot get satisfactory accuracy of analysis using analytical signal formed only on the base of single-charged ions. At the same time, in the formation of an analytical signal, as a sum of the intensities of the mass peaks of all charges of each element, the accuracy of the analysis does not depend either on the ionization cross section or on the nonreproducibility of the laser radiation power. It is shown that this approach completely eliminates the "matrix effect.''
机译:结果表明,影响具有激光离子的固体元素分析的准确性和再现性的主要原因是激光等离子体产生中不同元素的电离横截面的差异。在激光功率密度的不同值下进行计算机建模,以蒸发和产生激光等离子体的产生。建模的目的是通过从等离子体直接选择离子来确定分析的低精度的原因。研究表明,使用仅在一次带电离子基部形成的分析信号无法获得令人满意的分析精度。同时,在形成分析信号的情况下,作为每个元素的所有电荷的质量峰的强度之和,分析的准确性不依赖于电离横截面或不可通过的不可转让激光辐射功率。结果表明,这种方法完全消除了“矩阵效应”。

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