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通过添加氢气来改变氩气辉光放电:对光发射和质谱检测模式分析特性的影响

Modifying argon glow discharges by hydrogen addition: effects on analytical characteristics of optical emission and mass spectrometry detection modes.

作者信息

Martín A, Menéndez A, Pereiro R, Bordel N, Sanz-Medel A

机构信息

Department of Physics, University of Oviedo, Calvo Sotelo s/n, 33006, Oviedo, Spain.

出版信息

Anal Bioanal Chem. 2007 Aug;388(8):1573-82. doi: 10.1007/s00216-007-1291-2. Epub 2007 Apr 28.

Abstract

An overview of the effects produced by the presence of hydrogen in a glow discharge (GD), generated either in argon or in neon, is given. Extensive work related to the addition of hydrogen to GDs, coupled with optical emission spectrometry (OES) and mass spectrometry (MS), has been published in the last few years in an attempt to explain the processes involved in the discharge of mixed gases. Although numerous experimental results have already been explained theoretically, a complete understanding of the effects brought about by mixing hydrogen with argon (or another discharge inert gas) has not been reported yet. The use of theoretical models implemented using a computer has allowed the importance of some collisional and radiative processes in the inert gas plasma when hydrogen is present to be evaluated. This review shows, however, that both experimental work and theoretical work are still needed. The influence of small quantities of hydrogen on discharge parameters, such as electrical current or dc bias voltage, on crater shapes and on sputtering rates is thoroughly reviewed along with the effect on the analytical signals measured by OES and MS. Also, hydrogen-effect corrections needed to carry out proper calibrations for direct solid quantitative analyses are discussed.

摘要

本文给出了在氩气或氖气中产生的辉光放电(GD)中氢气存在时所产生效应的概述。在过去几年中,已经发表了大量与向辉光放电中添加氢气相关的研究工作,并结合了光发射光谱法(OES)和质谱法(MS),试图解释混合气体放电过程中所涉及的过程。尽管许多实验结果已经从理论上得到了解释,但尚未有关于氢气与氩气(或另一种放电惰性气体)混合所产生效应的完整理解的报道。使用计算机实现的理论模型能够评估氢气存在时惰性气体等离子体中一些碰撞和辐射过程的重要性。然而,本综述表明,实验工作和理论工作仍然是必要的。本文全面综述了少量氢气对放电参数(如电流或直流偏置电压)、坑洼形状和溅射速率的影响,以及对通过光发射光谱法和质谱法测量的分析信号的影响。此外,还讨论了进行直接固体定量分析的适当校准所需的氢效应校正。

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