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Characterization and Improvement of Signal Drift Associated with Electron Ionization Quadrupole Mass Spectrometry

机译:电子电离四极杆质谱法的信号漂移特性与改进

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摘要

Quadrupole mass spectrometry with electron ionization (EI-QMS) is a very popular detection technique in combination with gas chromatography. It is deployed for the analysis of volatile and semivolatile analytes in many industry domains. Although a very important factor for quantitative analysis, little is known about the stability of ion source performance. Only a few papers and patents report possible signal instabilities due to sample adsorption, degradation, or insulating deposits on the hot stainless steel surface of the ion source. In this study, a conventional stainless steel ion source was used to investigate possible signal drifts. It was observed that the EI-QMS instrument indeed suffered from continuous signal instability. It was found that the key parts which are responsible for the signal instabilities are those that regulate the ion beam toward the mass analyzer: the repeller, exit plate, and focusing lenses. The voltage of the repeller was found to have a major influence on the signal stability. The surface of the repeller, exit plate, and focusing lenses was modified by applying a gold coating. It was demonstrated that the signal stability of the MS dramatically improved when using the gold-coated parts. The contribution of each part to the stability improvement was quantitatively determined and compared with the standard stainless steel source performance. It was assumed that the signal drift observed with the stainless steel EI source originated from charge buildup on the surfaces. This hypothesis was supported by software simulations.
机译:带有电子电离的四极质谱(EI-QMS)是与气相色谱结合的一种非常流行的检测技术。它被部署用于分析许多工业领域中的挥发性和半挥发性分析物。尽管是定量分析的重要因素,但对离子源性能的稳定性知之甚少。只有少数几篇论文和专利报告了由于样品在离子源的热不锈钢表面上的吸附,降解或绝缘沉积而导致的信号不稳定。在这项研究中,使用常规的不锈钢离子源来研究可能的信号漂移。据观察,EI-QMS仪器确实遭受了持续的信号不稳定。发现导致信号不稳定的关键部分是调节朝向质量分析仪的离子束的部分:推斥极,出口板和聚焦透镜。发现推斥极的电压对信号稳定性有重要影响。推斥极,出口板和聚焦透镜的表面通过镀金涂层进行了修饰。结果表明,使用镀金零件时,MS的信号稳定性得到了显着改善。定量确定每个部分对稳定性提高的贡献,并将其与标准不锈钢源性能进行比较。假定使用不锈钢EI源观察到的信号漂移源自表面上的电荷累积。该假设得到软件仿真的支持。

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