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首页> 外文期刊>Rapid Communications in Mass Spectrometry: RCM >Influence of internal standard charge state on the accuracy of mass measurements in orthogonal acceleration time-of-flight mass spectrometers
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Influence of internal standard charge state on the accuracy of mass measurements in orthogonal acceleration time-of-flight mass spectrometers

机译:内标电荷状态对正交加速飞行时间质谱仪中质量测量精度的影响

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摘要

Accuracy of mass measurements performed in orthogonal acceleration time-of-flight (oa-TOF) mass spectrometers highly depends on the quality of the signal and the internal calibration. The use of two reference compounds which bracket the targeted unknown, give rise to ions with sufficient signal-to-noise ratio while avoiding detector saturation and produce signals of similar intensity as compared to the target is a common requirement which allow a 5 ppm accuracy on a routine basis. Ion charge state is demonstrated here to be an additional and particularly critical parameter. Using internal references of lower charge state than the target ion systematically yielded overestimated data. Errors measured for quadruply charged molecules were in the range 16-18 ppm when mass calibrants were singly charged ions while accuracy was below 5 ppm when references and target ions were in the same charge state. Magnitude of errors was found to increase with the difference in charge state. This phenomenon arises from the orthogonal acceleration of ions in the TOF analyzer, an interface implemented in all TOF mass spectrometers to accommodate continuous beam ionization sources. Copyright (c) 2007 John Wiley & Sons, Ltd.
机译:在正交加速飞行时间(oa-TOF)质谱仪中执行的质量测量精度在很大程度上取决于信号质量和内部校准。常见的要求是使用两种参比化合物将目标未知物括起来,产生具有足够信噪比的离子,同时避免检测器饱和,并产生与目标物相近的强度的信号,这是一种常见的要求,其目标化合物的准确度为5 ppm常规的基础。此处证明离子电荷状态是一个附加且特别关键的参数。使用比目标离子低电荷状态的内部参考系统地得出了高估的数据。当质量校准物为单电荷离子时,四电荷分子的测量误差为16-18 ppm,而当参比离子和目标离子处于相同电荷状态时,精度低于5 ppm。发现误差的大小随着充电状态的不同而增加。这种现象是由TOF分析仪中离子的正交加速引起的,TOF分析仪是在所有TOF质谱仪中实现的接口,用于容纳连续束电离源。版权所有(c)2007 John Wiley&Sons,Ltd.

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