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用于元素分析的数字四极杆电感耦合等离子体质谱仪的实验研究

Experimental Investigation of a Digital Quadrupole Inductively Coupled Plasma Mass Spectrometer for Elemental Analysis.

作者信息

Hu Rui, Gundlach-Graham Alexander

机构信息

Department of Chemistry, Iowa State University, Ames, Iowa 50011, United States.

出版信息

J Am Soc Mass Spectrom. 2024 Aug 7;35(8):1838-1845. doi: 10.1021/jasms.4c00167. Epub 2024 Jul 15.

DOI:10.1021/jasms.4c00167
PMID:39007349
Abstract

We describe the development and initial characterization of a digital waveform scanning quadrupole mass filter (digital QMF) used for inductively coupled plasma mass spectrometry (ICP-MS). Unlike a conventional voltage scanning QMF, in the digital QMF, the frequency of the digital waveform is scanned to filter ions with different / through the quadrupole, and / is proportional to 1/. In digital QMF, the duty cycle of the digital waveform driving the quadrupole is modified such that stability regions of interest are accessible for mass analysis with no DC voltage applied. Here, we evaluate the performance of our digital ICP-QMS instrument at several duty cycles and corresponding stability zones: from zone 1 to zone 3,2. We demonstrate that, regardless of the stability zone used, frequency vs / calibration matches theory. For lower-order stability zones, the mass range of the analyzer is limited by the high-frequency waveform required; however, at zone 3,2, we demonstrate a mass range from at least 40 to 232 Th, which covers most of the elemental mass range. Similar to the conventional QMF, higher stability regions of the digital QMF can yield a higher resolution. We obtained the best resolution for our current instrument at zone 3,2 with a 62.50/37.50 duty cycle. The resolution at full-width at 10% peak height () was 1200 and 1100 for In and Th, respectively. Lower pole bias yielded a of 1400 for Ar. Resolution and sensitivity comparisons indicate that higher values and higher duty cycles lead to enhanced resolution, but lower sensitivity. Our results validate the operation of digital quadrupole ICP-MS and suggest that, with continuous improvement of electronics and instrumentation, a high resolution digital waveform scanning ICP-QMS for elemental analysis is possible.

摘要

我们描述了一种用于电感耦合等离子体质谱(ICP-MS)的数字波形扫描四极杆质量过滤器(数字QMF)的开发及初步特性。与传统的电压扫描QMF不同,在数字QMF中,扫描数字波形的频率以通过四极杆过滤不同的离子,且该频率与1/ 成正比。在数字QMF中,驱动四极杆的数字波形的占空比被修改,使得在不施加直流电压的情况下,感兴趣的稳定区域可用于质量分析。在此,我们评估了我们的数字ICP-QMS仪器在几个占空比和相应稳定区(从1区到3,2区)的性能。我们证明,无论使用哪个稳定区,频率与 / 校准都符合理论。对于低阶稳定区,分析仪的质量范围受所需高频波形的限制;然而,在3,2区,我们展示了至少40至232 Th的质量范围,涵盖了大部分元素质量范围。与传统QMF类似,数字QMF的更高稳定区域可产生更高的分辨率。我们在3,2区以62.50/37.50的占空比为我们当前的仪器获得了最佳分辨率。在10%峰高()处的半高宽分辨率,铟和钍分别为1200和1100。较低的极偏压使氩的分辨率为1400。分辨率和灵敏度比较表明,更高的 值和更高的占空比会提高分辨率,但降低灵敏度。我们的结果验证了数字四极杆ICP-MS的运行,并表明随着电子学和仪器的不断改进,用于元素分析的高分辨率数字波形扫描ICP-QMS是可行的。

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Experimental Investigation of a Digital Quadrupole Inductively Coupled Plasma Mass Spectrometer for Elemental Analysis.用于元素分析的数字四极杆电感耦合等离子体质谱仪的实验研究
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