首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Pulsed flow modulation two-dimensional comprehensive gas chromatography-tandem mass spectrometry with supersonic molecular beams
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Pulsed flow modulation two-dimensional comprehensive gas chromatography-tandem mass spectrometry with supersonic molecular beams

机译:超声分子束脉冲流调制二维综合气相色谱-串联质谱

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Pulsed flow modulation (PFM) two-dimensional comprehensive gas chromatography (GC x GC) was combined with quadrupole-based mass spectrometry (MS) via a supersonic molecular beam (SMB) interface using a triple-quadrupole system as the base platform, which enabled tandem mass spectrometry (MSMS). PFM is a simple GC x GC modulator that does not consume cryogenic gases while providing tunable second GC x GC column injection time for enabling the use of quadrupole-based mass spectrometry regardless its limited scanning speed. The 20-ml/min second column flow rate involved with PFM is handled, splitless, by the SMB interface without affecting the sensitivity. The combinations of PFM GC x GC-MS with SMB and PFM GC x GC-MS-MS with SMB were explored with the analysis of diazinon and permethrin in coriander. PFM GC x GC-MS with SMB is characterized by enhanced molecular ion and tailing-free fast ion source response time. it enables universal pesticide analysis with full scan and data analysis with reconstructed single ion monitoring on the enhanced molecular ion and another prominent high mass fragment ion. The elimination of the third fragment ion used in standard three ions method results in significantly reduced matrix interference. GC x GC-MS with SMB improves the GC separation, and thereby our ability for sample identification using libraries. GC-MS-MS with SMB provides better reduction (elimination) of matrix interference than GC x GC-MS. However, it is a target method, which is not always applicable. GC x GC-MS-MS does not seem to further reduce matrix interferences over GC-MS-MS and unlike GC x GC-MS, it is incompatible with library identification, but it is beneficial to have both GC x CC and MS-MS capabilities in the same system. (c) 2008 Elsevier B.V. All rights reserved.
机译:使用三重四极杆系统作为基础平台,通过超音速分子束(SMB)接口将脉冲流调制(PFM)二维综合气相色谱(GC x GC)与基于四极杆的质谱(MS)结合使用,从而实现了串联质谱(MSMS)。 PFM是一种简单的GC x GC调节器,它不消耗低温气体,同时提供了可调节的第二GC x GC色谱柱进样时间,无论扫描速度如何,均可使用基于四极杆的质谱仪。通过SMB接口可不分流地处理PFM涉及的20 ml / min的第二色谱柱流速,而不会影响灵敏度。通过分析香菜中的二嗪农和苄氯菊酯,探索了具有SMB的PFM GC x GC-MS和具有SMB的PFM GC x GC-MS-MS的组合。具有SMB的PFM GC x GC-MS具有增强的分子离子和无拖尾的快速离子源响应时间的特点。它可以对全分子农药进行全面扫描分析,并可以对增强的分子离子和另一个突出的高质量碎片离子进行重构的单离子监测,从而进行数据分析。消除了标准三离子方法中使用的第三碎片离子,可显着降低基质干扰。带有SMB的GC x GC-MS改善了GC分离,从而提高了我们使用库进行样品鉴定的能力。与GC x GC-MS相比,带有SMB的GC-MS-MS可以更好地减少(消除)基质干扰。但是,它是一种目标方法,并不总是适用。 GC x GC-MS-MS似乎并没有进一步减少与GC-MS-MS相比的基质干扰,并且与GC x GC-MS不同,它与库识别不兼容,但同时具有GC x CC和MS-MS则是有益的同一系统中的功能。 (c)2008 Elsevier B.V.保留所有权利。

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