University of Oviedo, Department of Physical and Analytical Chemistry, Julián Clavería 8, 33006 Oviedo, Spain.
University of Oviedo, Department of Physics, Calvo Sotelo s/n, 33007 Oviedo, Spain.
Anal Chim Acta. 2015 Jun 2;877:33-40. doi: 10.1016/j.aca.2015.04.034. Epub 2015 Apr 22.
The analytical capabilities of a glow discharge (GD) as a secondary source for excitation/ionization of the material provided by laser ablation (LA) have been compared to conventional laser induced breakdown spectroscopy (LIBS). In LA-GD both sources can be independently adjusted to optimize the sampling process and then its subsequent excitation. This could involve a number of analytical performance advantages, such as reduced matrix dependence, greater precision and sensitivity than those encountered in LIBS. For such purpose, an ablation chamber design including two electrodes to generate the GD discharge has been built and assayed. A comparison between LIBS and LA-GD-OES has been carried out, both, under reduced argon and helium atmospheres. Different sets of samples (conducting reference materials, glass and fluorine pellets) have been used to evaluate the novel coupled technique. The LA-GD coupled system has shown to provide lower detection limits. In addition, best linear correlations between intensities and concentrations and lower matrix effects have also been found using the coupled system. Moreover, special advantages of the LA-GD-OES have also been demonstrated for the analysis of fluorine.
辉光放电(GD)作为激光烧蚀(LA)提供的材料激发/电离的二次源的分析能力已与传统的激光诱导击穿光谱(LIBS)进行了比较。在 LA-GD 中,两个源都可以独立调整,以优化采样过程,然后对其进行后续激发。这可能涉及一些分析性能优势,例如降低基质依赖性、比 LIBS 更高的精度和灵敏度。为此,已经构建并评估了一个包括两个电极以产生 GD 放电的烧蚀室设计。在减少氩气和氦气气氛下,对 LIBS 和 LA-GD-OES 进行了比较。使用不同的样品组(导电参考材料、玻璃和氟丸)来评估新的耦合技术。结果表明,LA-GD 耦合系统提供了更低的检测限。此外,还发现使用耦合系统可以获得强度与浓度之间的最佳线性相关性以及更低的基质效应。此外,还证明了 LA-GD-OES 在分析氟方面具有特殊优势。