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Analytical evaluation of cesium emission lines using laser-induced breakdown spectroscopy

机译:铯发射线的激光诱导击穿光谱分析评估

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A laser-induced breakdown spectroscopy-based method has been successfully developed to quantify cesium (Cs) in solution using spectroscopically pure graphite planchets as a sample support. As Cs is a line-poor system, only five usable Cs atomic emission lines could be found and characterised by employing high-resolution system. The calibration curves of these emission lines were constructed under optimised experimental conditions. The analytical properties of these calibration curves were evaluated based on the usable dynamic range, $R^{2}$ of fitting, root mean square error cross-validation and limit of detection (LOD). The dynamic ranges of these five lines were found to be in correlation with the energy level involved in the transition. An LOD of 4 ppm was obtained using Cs(I) 852.11-nm line, which corresponds to 0.16 $mu$g of Cs on the planchet. Based on the cross-validation approach, the best accuracy and precision ($sim$6%) were obtained for 852.11 nm in 3000 ppm solutions, and the same is $sim$8% for 672.33 nm and 697.33 nm in high concentrated solution of Cs.
机译:已成功开发出一种基于激光诱导击穿光谱的方法,该方法使用光谱纯的石墨薄脆片作为样品载体对溶液中的铯(Cs)进行定量。由于Cs是贫线系统,因此采用高分辨率系统只能找到5条可用的Cs原子发射线并对其进行表征。这些发射线的校准曲线是在优化的实验条件下构建的。这些校准曲线的分析特性是基于可用的动态范围,拟合的$ R ^ {2} $,均方根误差交叉验证和检测极限(LOD)进行评估的。发现这五条线的动态范围与过渡所涉及的能级相关。使用Cs(I)852.11-nm谱线可获得4 ppm的LOD,它对应于小刀上的0.16μgCs。基于交叉验证方法,在> 3000 ppm溶液中对852.11 nm可获得最佳的准确性和精密度($ sim $ 6%),在高浓度溶液中对于672.33 nm和697.33 nm则获得了最佳的精度和精密度($ sim $ 6%) Cs。

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