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首页> 外文期刊>Analytical and bioanalytical chemistry >Improving pulsed radiofrequency glow discharge for time-of-flight mass spectrometry simultaneous elemental and molecular analysis
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Improving pulsed radiofrequency glow discharge for time-of-flight mass spectrometry simultaneous elemental and molecular analysis

机译:用于飞行时间质谱的同时进行元素和分子分析的改进的脉冲射频辉光放电

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The performance of radiofrequency (rf) millisecond pulsed glow discharge (PGD) coupled to a fast orthogonal time-of-flight mass spectrometer (TOFMS) for chemical characterization and quantification of organic volatile compounds was investigated by using two different GD chamber designs. The designs investigated had substantial differences in the way that the volatile organic compound is introduced into the GD and the distance between the cathode and the sampling cone of the mass spectrometer. Bromochloromethane was selected as the model analyte because of the practical interest of determining trihalomethanes at low concentrations, and also because of both its low boiling point (to avoid problems associated with condensations in the interface) and the fact that it has two different heteroatoms, making the fragmentation patterns easier to follow. Pulse shapes of element, fragment, and molecular parent ions obtained by using the two GD chambers under investigation were critically compared. Results revealed the critical effect of the GD chamber geometry in obtaining the three types of chemical information, temporally discriminated. The spectra of the gaseous samples and of a polymer containing TBBPA (solid sample) were also compared. Detection limits for bromochloromethane in the order of low ng L~(-1), and the required high tolerance of the plasmas to the introduction of organic vapours, were achieved using one of the proposed GD designs. The capability of the designed system for the analysis of other volatile compounds, for example dimethyl disulfide and dimethyl selenide, was also successfully evaluated, making use of the analytical potential of the information obtained from the different pulse time regions.
机译:通过使用两种不同的GD腔室设计,研究了射频(rf)毫秒脉冲辉光放电(PGD)与快速正交飞行时间质谱仪(TOFMS)进行化学表征和定量有机挥发性化合物的性能。所研究的设计在将挥发性有机化合物引入GD的方式以及阴极与质谱仪的采样锥之间的距离方面存在重大差异。选择溴氯甲烷作为模型分析物是因为其在确定低浓度三卤甲烷方面的实际意义,并且还因为其低沸点(以避免与界面中的缩合有关的问题)以及其具有两个不同的杂原子这一事实,使得碎片模式更容易遵循。严格比较了使用两个正在研究的GD腔室获得的元素,碎片和分子母离子的脉冲形状。结果揭示了GD腔室几何结构在获得暂时区分的三种化学信息方面的关键作用。还比较了气态样品和含有TBBPA的聚合物(固体样品)的光谱。使用建议的GD设计之一可以实现对溴氯甲烷的检测限为低ng L〜(-1)的顺序,以及血浆对有机蒸气引入所要求的高耐受性。利用从不同脉冲时间区域获得的信息的分析潜力,还成功评估了设计系统分析其他挥发性化合物(例如二甲基二硫化物和硒化二甲基硒)的能力。

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