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首页> 外文期刊>Journal of Analytical Atomic Spectrometry >A comparison of non-pulsed radiofrequency and pulsed radiofrequency glow discharge orthogonal time-of-flight mass spectrometry for analytical purposes
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A comparison of non-pulsed radiofrequency and pulsed radiofrequency glow discharge orthogonal time-of-flight mass spectrometry for analytical purposes

机译:非脉冲射频和脉冲射频辉光放电正交飞行时间质谱的比较,用于分析目的

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摘要

The analytical potential of a radiofrequency glow discharge orthogonal time-of-flight mass spectrometer (RFGD-TOFMS) has been evaluated in both pulsed and non-pulsed modes. A certified reference steel was selected for this study. The operating conditions of the GD plasma (pressure and applied power) were optimized in terms of sensitivity. Additionally, duty cycle and pulse width parameters were investigated in the pulsed RF mode. In this case, high analyte ion signals and improved signal to background ratios were measured after the end of the pulse, in the so-called afterglow domain. The analyte ion signals were normalized to sputtering rates to compare different operating conditions. It was found that the sensitivity in the pulsed mode was improved in comparison to the non-pulsed mode; however, the factor of enhancement is element dependent. Moreover, improved analytical performance was obtained in terms of ion separation capabilities as well as in terms of accuracy and precision in the evaluation of the isotopic ratios, using the pulsed RFGD-TOFMS. Additionally, depth profile analyses of a Zn/Ni coating on steel were performed and the non-pulsed and pulsed RFGD-TOFMS analytical performances were compared.
机译:射频辉光放电正交飞行时间质谱仪(RFGD-TOFMS)的分析电势已在脉冲和非脉冲模式下进行了评估。本研究选择了经过认证的参考钢。 GD等离子体的工作条件(压力和施加功率)在灵敏度方面得到了优化。此外,在脉冲RF模式下研究了占空比和脉冲宽度参数。在这种情况下,在所谓的余辉域中,在脉冲结束后测量了较高的分析物离子信号和改善的信噪比。将分析物离子信号归一化为溅射速率,以比较不同的操作条件。已经发现,与非脉冲模式相比,脉冲模式下的灵敏度有所提高。但是,增强因素取决于元素。此外,使用脉冲RFGD-TOFMS在离子分离能力以及同位素比评估的准确性和精确度方面均获得了改进的分析性能。此外,对钢上的Zn / Ni涂层进行了深度分布分析,并比较了非脉冲和脉冲RFGD-TOFMS的分析性能。

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  • 来源
    《Journal of Analytical Atomic Spectrometry 》 |2009年第10期| 1373-1381| 共9页
  • 作者单位

    Department of Physical and Analytical Chemistry, Faculty of Chemistry, University of Oviedo, 33006 Oviedo, Spain;

    Department of Physics, Faculty of Science, University of Oviedo, 33007 Oviedo, Spain;

    Department of Physics, Faculty of Science, University of Oviedo, 33007 Oviedo, Spain;

    Department of Physical and Analytical Chemistry, Faculty of Chemistry, University of Oviedo, 33006 Oviedo, Spain;

    Horiba Jobin Yvon, Longjumeau, 91160, France;

    Horiba Jobin Yvon, Longjumeau, 91160, France;

    EMPA Materials Science and Technology, Feuenverkerstr. 39, CH-3602 Thun, Switzerland;

    Tofwerk AG, Uttigenstrasse 22, CH-3600 Thun, Switzerland;

    Department of Physical and Analytical Chemistry, Faculty of Chemistry, University of Oviedo, 33006 Oviedo, Spain;

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