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首页> 外文期刊>Journal of the American Society for Mass Spectrometry >Tandem time-of-flight mass spectrometer with high precursor ion selectivity employing spiral ion trajectory and improved offset parabolic reflectron
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Tandem time-of-flight mass spectrometer with high precursor ion selectivity employing spiral ion trajectory and improved offset parabolic reflectron

机译:具有高前驱体离子选择性的串联飞行时间质谱仪,采用螺旋离子轨迹和改进的偏置抛物线反射器

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In this study, we have developed a tandem time-of-flight mass spectrometry (TOF/TOF) technique involving the use of a matrix-assisted laser desorption/ionization ion source that exhibits high precursor ion selectivity. An ion optical system with a 17 m spiral ion trajectory was used in the first time-of-flight mass spectrometer. High precursor ion selectivity was achieved by realizing a 15 m flight path, which is considerably longer than that of the conventional MALDITOF/ TOF before the precursor ion selection by an ion gate; monoisotopic ions could be selected properly up to m/z 2500. Furthermore, the first time-of-flight mass spectrometer was composed of electrostatic sectors and could eliminate post-source decay (PSD) ions. Precursor ions with 20 keV kinetic energy were selected and injected into a collision cell, leading to the generation of fragment ions by high-energy collision-induced dissociation (HE-CID). The optimized second time-of-flight mass spectrometer included a post-acceleration region and an offset parabolic reflectron to record product ion spectra in the entire mass range. Our system could generate a simple HE-CID product ion spectrum because each fragment pathway could be observed as a single peak by the selection of monoisotopic ions of all precursor ions and HE-CID fragment pathways could be predominantly observed by the PSD ion elimination.
机译:在这项研究中,我们已经开发了串联飞行时间质谱(TOF / TOF)技术,该技术涉及使用具有高前驱物离子选择性的基质辅助激光解吸/电离离子源。在第一飞行时间质谱仪中使用了具有17 m螺旋离子轨迹的离子光学系统。通过实现15 m的飞行路径可以实现较高的前驱体离子选择性,该飞行路径比通过离子门选择前驱体离子之前的常规MALDITOF / TOF更长。单同位素离子的选择最高达m / z2500。此外,第一台飞行时间质谱仪由静电扇区组成,可以消除源后衰减(PSD)离子。选择具有20 keV动能的前体离子并将其注入碰撞池中,从而通过高能碰撞诱导离解(HE-CID)生成碎片离子。经过优化的第二飞行时间质谱仪包括一个加速后区域和一个偏置抛物线反射器,可记录整个质量范围内的产物离子光谱。我们的系统可以生成简单的HE-CID产物离子谱,因为通过选择所有前体离子的单同位素离子,每个片段途径都可以观察为单个峰,而PSD离子消除则可以主要观察到HE-CID片段途径。

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