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A new approach for accurate mass assignment on a multi-turn time-of-flight mass spectrometer

机译:一种新方法,可在多匝飞行时间质谱仪上进行大规模分配

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摘要

A simple, effective accurate mass assignment procedure for a time-of-flight mass spectrometer is desirable. External mass calibration using a mass calibration standard together with an internal mass reference (lock mass) is a common technique for mass assignment, however, using polynomial fitting can result in mass-dependent errors. By using the multi-turn timeof- flight mass spectrometer infiTOF-UHV, we were able to obtain multiple time-of-flight data from an ion monitored under several different numbers of laps that was then used to calculate a mass calibration equation. We have developed a data acquisition system that simultaneously monitors spectra at several different lap conditions with on-the-fly centroid determination and scan law estimation, which is a function of acceleration voltage, flight path, and instrumental time delay. Less than 0.9 mDa mass errors were observed for assigned mass to charge ratios (m/z) ranging between 4 and 134 using only 40 Arthorn as a reference. It was also observed that estimating the scan law on-the-fly provides excellent mass drift compensation.
机译:一种简单,有效的精确的质量分配过程,可用于飞行时间质谱仪。外部质量校准使用质量校准标准与内部质量参考(锁定质量)一起是一种用于质量分配的常见技术,但是,使用多项式拟合可能导致质量依赖性误差。通过使用多转时间 - 飞行 - UHV - UHV,我们能够从根据几个不同数量的圈下监测的离子获得多个飞行时间数据,然后用于计算质量校准方程。我们开发了一种数据采集系统,在几种不同的leap条件下同时监控光谱,具有可在线质心测定和扫描法估计,这是加速电压,飞行路径和乐器时间延迟的函数。在仅使用40饰品作为参考的情况下,观察到少于0.9MDA的质量以在4和134之间的电荷比率(m / z)。还观察到,估计扫描法在飞行中提供出色的质量漂移补偿。

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