Amirav Aviv, Gordin Alexander, Poliak Marina, Fialkov Alexander B
School of Chemistry, Sackler Faculty of Exact Sciences, Tel Aviv University, Tel Aviv 69978, Israel.
J Mass Spectrom. 2008 Feb;43(2):141-63. doi: 10.1002/jms.1380.
Gas chromatography-mass spectrometry (GC-MS) with supersonic molecular beams (SMBs) (also named Supersonic GC-MS) is based on GC and MS interface with SMBs and on the electron ionization (EI) of vibrationally cold analytes in the SMBs (cold EI) in a fly-through ion source. This ion source is inherently inert and further characterized by fast response and vacuum background filtration capability. The same ion source offers three modes of ionization including cold EI, classical EI and cluster chemical ionization (CI). Cold EI, as a main mode, provides enhanced molecular ions combined with an effective library sample identification, which is supplemented and complemented by a powerful isotope abundance analysis method and software. The range of low-volatility and thermally labile compounds amenable for analysis is significantly increased owing to the use of the contact-free, fly-through ion source and the ability to lower sample elution temperatures through the use of high column carrier gas flow rates. Effective, fast GC-MS is enabled particularly owing to the possible use of high column flow rates and improved system selectivity in view of the enhancement of the molecular ion. This fast GC-MS with SMB can be further improved via the added selectivity of MS-MS, which by itself benefits from the enhancement of the molecular ion, the most suitable parent ion for MS-MS. Supersonic GC-MS is characterized by low limits of detection (LOD), and its sensitivity is superior to that of standard GC-MS, particularly for samples that are hard for analysis. The GC separation of the Supersonic GC-MS can be improved with pulsed flow modulation (PFM) GC x GC-MS. Electron ionization LC-MS with SMB can also be combined with the Supersonic GC-MS, with fast and easy switching between these two modes of operation.
带有超音速分子束(SMB)的气相色谱 - 质谱联用仪(GC - MS)(也称为超音速GC - MS)基于气相色谱和质谱与超音速分子束的接口,以及在飞行通过式离子源中对超音速分子束中振动冷却的分析物进行电子电离(EI)(冷EI)。这种离子源本质上是惰性的,其特点是响应速度快和具有真空背景过滤能力。同一离子源提供三种电离模式,包括冷EI、经典EI和团簇化学电离(CI)。冷EI作为主要模式,可提供增强的分子离子,并结合有效的库样本识别功能,同时辅以强大的同位素丰度分析方法和软件。由于使用了无接触的飞行通过式离子源,以及通过使用高柱载气流速降低样品洗脱温度的能力,适合分析的低挥发性和热不稳定化合物的范围显著增加。特别是由于可以使用高柱流速以及鉴于分子离子增强而提高的系统选择性,从而实现了高效、快速的GC - MS。这种带有SMB的快速GC - MS可以通过增加MS - MS的选择性进一步改进,而MS - MS本身受益于分子离子的增强,分子离子是MS - MS最合适的母离子。超音速GC - MS的特点是检测限低(LOD),其灵敏度优于标准GC - MS,特别是对于难以分析的样品。超音速GC - MS的气相色谱分离可以通过脉冲流调制(PFM)GC×GC - MS得到改善。带有SMB的电子电离液相色谱 - 质谱联用仪也可以与超音速GC - MS相结合,并且可以在这两种操作模式之间快速轻松地切换。