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首页> 外文期刊>Journal of mass spectrometry: JMS >Multi-ion quantitative mass spectrometry by orthogonal projection method with periodic signal of electrostatic ion beam trap
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Multi-ion quantitative mass spectrometry by orthogonal projection method with periodic signal of electrostatic ion beam trap

机译:带有静电离子束阱周期信号的正交投影法进行多离子定量质谱分析

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摘要

In this article, orthogonal projection method (OPM) is introduced which could perform multi-ion quantitative MS with signal of electrostatic ion beam trap (EIBT), and its application has been demonstrated by numerical modeling. To acquire periodic current signal, a model of EIBT with cylindrical-detector is set up to simulate ions' oscillatory motion. Whereafter, OPM is introduced and applied for quantitative MS with sampling time being as short as 200 ?μs. Comparing with fast Fourier transform (FFT), the MS acquired by OPM is characterized by a more readable spectrum, a much shortened sampling time and the ability to do quantitative analysis. Within the optimum sampling time range, quantitative MS could be performed with accuracy of over 90%. It is found that the lower limit and the upper limit of the optimum sampling time range are all proportional to $M^{3/2}ig/delta M$ and its relation is specified by linear regression. Aided by the results of FFT, OPM is applied to a compound tested signal induced by three kinds of ions. It shows that OPM could be performed respectively to each kind of ions without interference from other component of the signal. The resolving power acquired by OPM is about 75 000 with sampling time as short as 10 ms, and the quantitative result that acquired is quite accurate.
机译:本文介绍了可以利用静电离子束阱(EIBT)信号执行多离子定量MS的正交投影法(OPM),并通过数值建模论证了其应用。为了获取周期性电流信号,建立了带有圆柱探测器的EIBT模型来模拟离子的振荡运动。此后,引入了OPM并将其应用于定量MS,采样时间短至200μs。与快速傅立叶变换(FFT)相比,OPM采集的质谱仪具有更易读的光谱,大大缩短的采样时间以及进行定量分析的功能。在最佳采样时间范围内,定量MS的准确度可超过90%。发现最佳采样时间范围的下限和上限均与$ M ^ {3/2} big / delta M $成比例,并且其关系由线性回归指定。借助于FFT的结果,将OPM应用于由三种离子感应的复合测试信号。它表明可以对每种离子分别执行OPM,而不会受到信号其他分量的干扰。 OPM所获得的分辨力约为75,000,采样时间仅为10 ms,所获得的定量结果非常准确。

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