Abstract Coupling of supercritical fluid chromatography to mass spectrometry for the analysis of Dechlorane Plus: Examination of relevant negative ion atmospheric pressure chemical ionization mechanisms
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Coupling of supercritical fluid chromatography to mass spectrometry for the analysis of Dechlorane Plus: Examination of relevant negative ion atmospheric pressure chemical ionization mechanisms

机译:超临界流体色谱法与质谱分析脱氯酸分析:相关负离离子大气压化学电离机制的检查

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Abstract During an investigation of the potential associated with coupling packed column supercritical fluid chromatography (pSFC) to mass spectrometry for the analysis of Dechlorane Plus and related compounds, it was found that negative ion atmospheric pressure chemical ionization (APCI) was a promising ionization technique. In the course of maximizing the responses associated with the target analytes, it proved useful to examine some aspects of the complex nature and reactivity of the corona discharge plasma generated to explain the observed ionization products. Various dopants/reagents were screened for both APCI and atmospheric pressure photoionization (APPI) in negative ion mode and mechanisms of ionization involving superoxide were elucidated based on the results obtained. Superoxide formation was found to be temperature dependent and directly related to the intensity of the ion cluster [M-Cl+O]- obtained for the target DP analytes. Furthermore, triethylamine was identified as a reagent capable of suppressing unwanted side reactions during the ionization process and maximizing response associated with the analytes of interest. The applicability of pSFC-APCI/MS for the separation and detection of Dechlorane Plus and related compounds was demonstrated by analyzing Lake Ontario sediment and comparing the results with values reported in the scientific literature. Graphical abstract
机译:<![cdata [ 抽象 在与偶联柱超临界流体色谱(PSFC)相关的潜在的调查中,以质谱分析Dechlorane Plus和相关化合物,发现负离子大气压化学电离(APCI)是有前途的电离技术。在最大化与靶分析物相关的响应的过程中,证明了用于检查产生的电晕放电等离子体的复杂性质和反应性的一些方面是有用的,以解释观察到的电离产物。筛选各种掺杂剂/试剂的APCI和大气压光相(APPI)负离子模式,并且涉及涉及超氧化物的电离机制,基于得到的结果。发现超氧化物形成为温度依赖性,与离子簇的强度直接相关[M-Cl + O] - -用于靶dp分析物。此外,将三乙胺鉴定为能够在电离过程中抑制不需要的副反应的试剂,并最大化与感兴趣的分析物相关的反应。通过分析安大略湖沉积物并将结果与​​科学文献中报道的值进行比较,证明了PSFC-APCI / MS的适用性和相关化合物的分离和相关化合物。 图形抽象

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