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Comprehensive gas chromatography-time-of-flight mass spectrometry using soft and selective photoionization techniques

机译:使用软性和选择性光电离技术的全面气相色谱-飞行时间质谱

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摘要

The hyphenation of gas chromatography and mass spectrometry (GC/MS) revolutionized organic analysis. In GC/ MS coupling, usually electron impact ionization is applied, and molecules are identified by their fragment pattern. Although mass spectrometry in principle is a separation method, it is used predominantly as a spectrometric technique. However, if soft (i.e., fragmentation-free) ionization techniques are applied, the inherent separation character of MS is emphasized, which has similarities to a GC boiling point separation. By combining polar column GC separation and fast soft ionization time-of-flight mass spectrometry technology, a comprehensive separation of complex petrochemical samples can be obtained ( GC x MS approach). Compounds of comparable physical-chemical properties are characteristically grouped together in a two-dimensional retention time-m/z representation. This resembles the separation characteristics of comprehensive two-dimensional gas chromatography ( GC x GC) and, thus, represents a novel multidimensional separation approach. In this work, a gas chromatograph equipped with a polar separation column was coupled to a home-built laser ionization time-of-flight mass spectrometer. Laser-based, single-photon ionization was used for universal soft ionization and resonance-enhanced multiphoton ionization for selective ionization of aromatic compounds. A novel capillary-jet inlet system was used for the coupling. Multidimensional comprehensive analysis of complex petrochemical hydrocarbon samples using gas chromatography coupled to mass spectrometry with soft and selective photo ionization sources is first demonstrated.
机译:气相色谱和质谱联用技术(GC / MS)彻底改变了有机分析方法。在GC / MS偶联中,通常应用电子碰撞电离,并通过其片段模式识别分子。尽管质谱原理上是分离方法,但主要用作质谱技术。但是,如果应用软(即无碎片)电离技术,则将强调MS固有的分离特性,这与GC沸点分离相似。通过将极柱GC分离和快速软电离飞行时间质谱技术结合使用,可以对复杂的石化样品进行全面分离(GC x MS方法)。具有可比较的物理化学性质的化合物通常以二维保留时间m / z表示形式归类在一起。这类似于全面二维气相色谱(GC x GC)的分离特性,因此代表了一种新颖的多维分离方法。在这项工作中,将配备有极性分离柱的气相色谱仪与自制的激光电离飞行时间质谱仪耦合。基于激光的单光子电离用于通用软电离,而共振增强型多光子电离用于芳族化合物的选择性电离。一种新型的毛细喷射入口系统用于耦合。首先证明了使用气相色谱与质谱联用软和选择性光电离源对复杂石化烃样品进行多维综合分析。

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