首页> 外文期刊>Journal of the American Society for Mass Spectrometry >Improved Quantitative Dynamic Range of Time-of-Flight Mass Spectrometry by Simultaneously Waveform-Averaging and Ion-Counting Data Acquisition
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Improved Quantitative Dynamic Range of Time-of-Flight Mass Spectrometry by Simultaneously Waveform-Averaging and Ion-Counting Data Acquisition

机译:通过同时波形平均和离子计数数据采集改善飞行时间质谱法的定量动态范围

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摘要

Two different types of data acquisition methods, "averaging mode" and "ion-counting mode", have been used in a time-of-flight (TOF) mass spectrometry. The most common method is an averaging mode that sums waveform signals obtained from each flight cycle. While it is possible to process many ions arriving at the same TOF in one flight cycle, low-abundance ions are difficult to measure because ion signals are overwhelmed by noises from the detection system. An ion-counting mode is suitable for the detection of such low-concentration ions, but counting loss occurs when two or more ions arrive at the detector within the dead time of the acquisition system. In this study, we introduce a technique that combines two methods to measure target ions with a high concentration difference, i.e., averaging mode and ion-counting mode are used simultaneously for high abundant and trace ions, respectively. By processing waveforms concurrently during data acquisition, one can choose to analyze either or both types of data to achieve a highly quantitative mass spectrum over a wide range of sample concentrations. The result of the argon isotope analysis shows that this method provides a more accurate determination of the isotope ratio compared to averaging mode alone at one-twentieth of the analysis time required by ion-counting alone.
机译:两种不同类型的数据采集方法,“平均模式”和“离子计数模式”已被用于飞行时间(TOF)质谱法。最常见的方法是总和从每个飞行周期获得的波形信号的平均模式。虽然可以在一个飞行循环中处理到达相同TOF的许多离子,但是低丰度离子难以测量,因为离子信号由来自检测系统的噪声不堪重负。离子计数模式适用于检测这种低浓度离子,但是当两个或更多个离子到达获取系统的死区时间内时发生计数损失。在这项研究中,我们介绍了一种技术,该技术结合了两种方法来测量具有高浓度差异的目标离子,即,平均模式和离子计数模式分别用于高丰富和迹线离子。通过在数据采集期间同时处理波形,可以选择分析或两种类型的数据,以在各种样品浓度上实现高度定量的质谱。氩同位素分析的结果表明,与单独的离子计数所需的分析时间的一度分析时间,该方法提供了与平均模式相比的同位素比的更准确测定。

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