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Determination of Pesticides by Gas Chromatography Combined with Mass Spectrometry Using Femtosecond Lasers Emitting at 267, 400, and 800 nm as the Ionization Source

机译:使用在267,400和800nm发射的飞秒激光器作为电离源的飞秒激光结合质谱法测定杀虫剂。

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摘要

A standard sample mixture containing 51 pesticides was separated by gas chromatography (GC), and the constituents were identified by mass spectrometry (MS) using femtosecond lasers emitting at 267, 400, and 800 nm as the ionization source. A two-dimensional display of the GC/MS was successfully used for the determination of these compounds. A molecular ion was observed for 38 of the compounds at 267 nm and for 30 of the compounds at 800 nm, in contrast to 27 among 50 compounds when electron ionization was used. These results suggest that the ultraviolet laser is superior to the near-infrared laser for molecular weight determinations and for a more reliable analysis of these compounds. In order to study the conditions for optimal ionization, the experimental data were examined using the spectral properties (i.e., the excitation and ionization energies and absorption spectra for the neutral and ionized species) obtained by quantum chemical calculations. A few molecules remained unexplained by the currently reported rules, requiring additional rules for developing a full understanding of the femtosecond ionization process. The pesticides in the homogenized matrix obtained from kabosu (citrus sphaerocarpa) were measured using lasers emitting at 267 and 800 nm. The pesticides were clearly separated and measured on the two-dimensional display, especially for the data measured at 267 nm, suggesting that this technique would have potential for use in the practical trace analysis of the pesticides in the environment.
机译:通过气相色谱(GC)分离含有51种农药的标准样品混合物,并使用在267,400和800nm处发射的飞秒激光器以质谱(MS)鉴定成分作为电离源。 GC / MS的二维显示成功地用于测定这些化合物。在使用电子电离时,在800nm下以267nm的267nm和30个化合物的化合物以267nm的38个化合物观察到分子离子。这些结果表明,紫外线激光优于近红外激光器,用于分子量测定和用于这些化合物的更可靠分析。为了研究最佳电离的条件,使用量子化学计算获得的光谱性质(即,用于中性和离子化物质的激发和电离能量和吸收光谱)检查实验数据。目前报告的规则仍未解释的一些分子,需要额外的规则来制定对飞秒电离过程的全面了解。使用在267和800nm处发射的激光剂测量从Kabosu(柑橘Sphaerocarpa)获得的均质化基质中的农药。农药清楚地分离并在二维显示器上测量,特别是对于在267nm处测量的数据,表明该技术将在环境中的杀虫剂的实际痕量分析中具有潜力。

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  • 来源
    《Analytical chemistry》 |2018年第7期|共8页
  • 作者单位

    Kyushu Univ Grad Sch Engn Dept Appl Chem Nishi Ku 744 Motooka Fukuoka 8190395 Japan;

    Kyushu Univ Grad Sch Design Dept Environm Design Minami Ku 4-9-1 Shiobaru Fukuoka 8158540 Japan;

    Kyushu Univ Ctr Future Chem Div Int Strategy Nishi Ku 744 Motooka Fukuoka 8190395 Japan;

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  • 正文语种 eng
  • 中图分类 分析化学;
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