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C_(60) Secondary Ion Mass Spectrometry with a Hybrid-Quadrupole Orthogonal Time-of-Flight Mass Spectrometer

机译:混合四极杆正交飞行时间质谱仪进行C_(60)二次离子质谱分析

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摘要

A hybrid quadrupole orthogonal time-of-flight mass spectrometer optimized for matrix-assisted laser desorption ionization (MALDI) and electrospray ionization has been equipped with a C_(60) cluster ion source. This configuration is shown to exhibit a number of characteristics that improve the performance of traditional time-of-flight secondary ion mass spectrometry (TOF-SIMS) experiments for the analysis of complex organic materials and, potentially, for chemical imaging. Specifically, the primary ion beam is operated as a continuous rather than a pulsed beam, resulting in up to 4 orders of magnitude greater ion fluence on the target. The secondary ions are extracted at very low voltage into 8 mTorr of N_(2) gas introduced for collisional focusing and cooling purposes. This extraction configuration is shown to yield secondary ions that rapidly lose memory of the mechanism of their birth, yielding tandem mass spectra that are identical for SIMS and MALDI. With implementation of ion trapping, the extraction efficiency is shown to be equivalent to that found in traditional TOF-SIMS machines. Examples are given, for a variety of substrates that illustrate mass resolution of 12 000-15 600 with a mass range for inorganic compounds to m/z 40 000. Preliminary chemical mapping experiments show that with added sensitivity, imaging in the MS/MS mode of operation is straightforward. In general, the combination of MALDI and SIMS is shown to add capabilities to each technique, providing a robust platform for TOF-SIMS experiments that already exists in a large number of laboratories.
机译:为基质辅助激光解吸电离(MALDI)和电喷雾电离而优化的混合四极杆正交飞行时间质谱仪配备了C_(60)簇离子源。该配置显示出许多特性,这些特性可改善传统飞行时间二次离子质谱(TOF-SIMS)实验的性能,以分析复杂的有机材料,并可能进行化学成像。具体来说,主离子束是连续的,而不是脉冲束,导致靶上的离子通量增加多达4个数量级。次级离子以非常低的电压被提取到8 mTorr的N_(2)气体中,该气体被引入以进行碰撞聚焦和冷却。该提取配置显示可产生二级离子,这些二级离子会迅速失去其诞生机理的记忆,从而产生与SIMS和MALDI相同的串联质谱。通过实施离子阱,萃取效率与传统的TOF-SIMS机器相当。给出了各种底物的实例,这些底物的质量分辨率为12 000-15 600,无机化合物的质量范围为m / z 40000。初步的化学作图实验表明,通过提高灵敏度,可以在MS / MS模式下成像操作简单明了。通常,显示MALDI和SIMS的组合可为每种技术增加功能,为大量实验室中已经存在的TOF-SIMS实验提供了一个可靠的平台。

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