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首页> 外文期刊>Journal of the American Society for Mass Spectrometry >Application of simultaneous excitation/detection to generate real-time excitation profiles in Fourier transform ion cyclotron resonance mass spectrometry
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Application of simultaneous excitation/detection to generate real-time excitation profiles in Fourier transform ion cyclotron resonance mass spectrometry

机译:同步激发/检测在实时傅里叶变换离子回旋共振质谱分析中的应用

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摘要

Simultaneous excitation/detection (SED), which permits observation of ion motion during an excitation event, is used to generate real-time Fourier transform ion cyclotron resonance (FTICR) excitation profiles that track the radial extent of ion motion in a trapped-ion cell. The conventional FTICR excitation profile is collected in a series of individual experiments in which peak magnitude is monitored as excitation voltage is increased. In contrast, SED permits the single-scan detection of ion cyclotron motion within the trapped-ion cell and consequently yields the data that produces a real-time excitation profile. Data analysis techniques are presented that facilitate conversion of a time domain SED profile into an excitation profile. An order of magnitude decrease in the amount of time is required to acquire an excitation profile, while the precision of the measurement is improved. To demonstrate the utility of the technique, it is applied to the study of axial and radial ion loss mechanisms for argon, benzene, and acetophenone ions under different conditions. SED excitation profiles are also used to illustrate the facility of quadrupolar excitation for minimizing radial ion loss. (C) 2000 American Society for Mass Spectrometry. [References: 50]
机译:同时激发/检测(SED)允许观察激发事件期间的离子运动,用于生成实时傅里叶变换离子回旋共振(FTICR)激发曲线,该曲线跟踪捕获离子池中离子运动的径向范围。在一系列单独的实验中收集了常规的FTICR激励曲线,其中随着激励电压的增加,对峰值幅度进行监控。相比之下,SED可以对捕获的离子池内的离子回旋加速器运动进行单​​次扫描检测,因此可产生产生实时激发曲线的数据。提出了有助于将时域SED轮廓转换为激励轮廓的数据分析技术。需要时间量级减少一个数量级以获取激励曲线,同时提高了测量精度。为了证明该技术的实用性,将其应用于研究不同条件下氩,苯和苯乙酮离子的轴向和径向离子损失机理。 SED激发曲线也用于说明四极激发的功能,以最大程度地减少径向离子损失。 (C)2000年美国质谱学会。 [参考:50]

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