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Optical Emission Spectroscopy of Combined Laser Ablation-Hollow Cathode Glow Discharge Plasma Source

机译:混合激光消融 - 空心阴极辉光放电等离子体源的光发射光谱

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The combination of laser ablation and glow discharge (LA-GD) as a spectroscopic source for elemental analysis is an increasing field of study in recent years. This is due to the fact that the laser ablation-glow discharge provides a more stable and reproducible spectra of the sample in comparison with the transient laser ablation. An important advantage of the laser ablation-glow discharge technique is the possibility for independent control of the processes of sample introduction and sample excitation. The combination of laser ablation and glow discharge is also capable of sampling non-conducting or low-sputtering-yield materials which for stand-alone glow discharge usually requires preliminary sample preparation procedures or use of pulsed power supply. Exploiting the characteristics of this technique has resulted in increase in sensitivity and limit of detection (Tereszchuk K, Vadillo J, Lazerna J Appl Surf Sci 255). Here results on one of the realization of the laser ablation-glow discharge technique - combination of laser ablation and hollow cathode discharge are reported (Karatodorov S, Mihailov V, Grozeva M, Open Chem 13). Spatial separation of the laser ablation introduction from the hollow cathode discharge excitation is achieved. The sample analytical line emission intensity dependence on background gas pressure, sample cathode distance and discharge current is studied. This allowed optimization of the technique for increasing its analytical characteristics to be done.
机译:激光消融和辉光放电(La-Gd)作为元素分析的光谱源的组合是近年来越来越多的研究领域。这是由于激光烧蚀发光放电提供了与瞬态激光烧蚀相比的样品的更稳定和可再现的光谱。激光消融辉光放电技术的一个重要优点是对样品引入和样品激发过程的独立控制的可能性。激光消融和辉光放电的组合也能够采样非导电或低溅射 - 产率材料,其用于独立辉光放电通常需要初步样品制备程序或使用脉冲电源。利用这种技术的特性导致了敏感性和检测极限(Tereszchuk K,Vadillo J,Lazerna J Appl Surf SCI 255)。这里导致激光消融 - 辉光放电技术的一个实现 - 报告了激光消融和中空阴极放电的组合(Karatodorov S,Mihailov V,Grazeva M,Open Chem 13)。实现了激光消融从中空阴极放电激发引入的空间分离。研究了对背景气体压力,样品阴极距离和放电电流的样本分析线发射强度依赖性。这允许优化用于提高其分析特性的技术。

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