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带有超音速分子束的电子电离液相色谱-质谱联用技术——新概念、优势及应用

Electron ionization LC-MS with supersonic molecular beams--the new concept, benefits and applications.

作者信息

Seemann Boaz, Alon Tal, Tsizin Svetlana, Fialkov Alexander B, Amirav Aviv

机构信息

School of Chemistry, Tel Aviv University, Tel Aviv, 69978, Israel.

出版信息

J Mass Spectrom. 2015 Nov;50(11):1252-63. doi: 10.1002/jms.3695.

Abstract

A new type of electron ionization LC-MS with supersonic molecular beams (EI-LC-MS with SMB) is described. This system and its operational methods are based on pneumatic spray formation of the LC liquid flow in a heated spray vaporization chamber, full sample thermal vaporization and subsequent electron ionization of vibrationally cold molecules in supersonic molecular beams. The vaporized sample compounds are transferred into a supersonic nozzle via a flow restrictor capillary. Consequently, while the pneumatic spray is formed and vaporized at above atmospheric pressure the supersonic nozzle backing pressure is about 0.15 Bar for the formation of supersonic molecular beams with vibrationally cold sample molecules without cluster formation with the solvent vapor. The sample compounds are ionized in a fly-though EI ion source as vibrationally cold molecules in the SMB, resulting in 'Cold EI' (EI of vibrationally cold molecules) mass spectra that exhibit the standard EI fragments combined with enhanced molecular ions. We evaluated the EI-LC-MS with SMB system and demonstrated its effectiveness in NIST library sample identification which is complemented with the availability of enhanced molecular ions. The EI-LC-MS with SMB system is characterized by linear response of five orders of magnitude and uniform compound independent response including for non-polar compounds. This feature improves sample quantitation that can be approximated without compound specific calibration. Cold EI, like EI, is free from ion suppression and/or enhancement effects (that plague ESI and/or APCI) which facilitate faster LC separation because full separation is not essential. The absence of ion suppression effects enables the exploration of fast flow injection MS-MS as an alternative to lengthy LC-MS analysis. These features are demonstrated in a few examples, and the analysis of the main ingredients of Cannabis on a few Cannabis flower extracts is demonstrated. Finally, the advantages of EI-LC-MS with SMB are listed and discussed.

摘要

描述了一种新型的带有超音速分子束的电子电离液相色谱 - 质谱联用仪(EI-LC-MS with SMB)。该系统及其操作方法基于在加热的喷雾汽化室中通过气动喷雾形成液相色谱液流、样品完全热汽化以及随后在超音速分子束中对振动冷却分子进行电子电离。汽化后的样品化合物通过限流毛细管转移到超音速喷嘴中。因此,虽然气动喷雾在高于大气压的条件下形成并汽化,但超音速喷嘴的背压约为0.15巴,用于形成具有振动冷却样品分子且不与溶剂蒸汽形成团簇的超音速分子束。样品化合物在飞行通过式EI离子源中作为超音速分子束中的振动冷却分子被电离,从而产生“冷EI”(振动冷却分子的EI)质谱,该质谱显示出标准的EI碎片以及增强的分子离子。我们评估了EI-LC-MS with SMB系统,并证明了其在NIST库样品鉴定中的有效性,增强分子离子的可用性对其起到了补充作用。EI-LC-MS with SMB系统的特点是具有五个数量级的线性响应以及与化合物无关的均匀响应,包括对非极性化合物。这一特性改善了样品定量分析,无需针对特定化合物进行校准即可近似完成。与EI一样,冷EI不受离子抑制和/或增强效应(困扰ESI和/或APCI)的影响,这有利于更快的液相色谱分离,因为完全分离并非必要条件。离子抑制效应的不存在使得可以探索快速流动注射质谱 - 质谱联用作为冗长的液相色谱 - 质谱分析的替代方法。通过几个例子展示了这些特性,并展示了对几种大麻花提取物中大麻主要成分的分析。最后,列出并讨论了EI-LC-MS with SMB的优点。

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