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Laser desorption solid phase microextraction.

机译:激光解吸固相微萃取。

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摘要

The use of laser desorption as a sample introduction method for solid-phase microextraction (SPME) has been investigated in this research project. Three different types of analytical instruments, mass spectrometry (MS), ion mobility spectrometry (IMS) and gas chromatography (GC) were employed as detectors. The coupling of laser desorption SPME to these three instruments was constructed and described in here.The ionization mechanism of poly(ethylene glycol) 400 (PEG) was studied with the SPME/SELDI-IMS 400B device. It was found that the potassiated ions and sodiated ions were both present in the ion mobility spectra. The results obtained with quadrupole time-of-flight (QTOF) MS confirmed the presence of both potassiated and sodiated ions. This result suggested that cationization is the main ionization process when polymers are directly ionized from the PPY coated silica surface. Four PEGs with different average molecular weights and poly(propylene glycol) 400 were also tested with this SPME/SELDI device. The differences between the ion mobility spectra of these polymers could be used for the fast identification of synthetic polymers. (Abstract shortened by UMI.)Solid-phase microextraction/surface enhanced laser desorption ionization fibers (SPME/SELDI) were developed and have been coupled to two IMS devices. SPME/SELDI combines sampling, sample preparation and sample introduction with the ionization and desorption of the analytes. Other than being the extraction phase for the SPME fiber, the electroconductive polymer coatings can facilitate the ionization process without the involvement of a matrix assisted laser desorption/ionization (MALDI) matrix. The performance of the SPME coatings and the experimental parameters for laser desorption SPME were investigated with the SPME/SELDI-IMS devices. The new SPME/SELDI-IMS 400B device has a faster data acquisition system and a more powerful data analysis program. The optimum laser operation parameters were 250 muJ laser energy and 20 Hz repetition rate. Three new SPME coatings, polypyrrole (PPY), polythiophene (PTH) and polyaniline (PAN) were developed and evaluated by an IMS and a GC. The PPY coating was found to have the best performance and was used in most of the experiments. The characteristics of the PPY and the PTH SPME/SELDI fiber were then assessed with both IMS and MS. Good linearity could be observed between the fiber surface area and the signal intensity, and between the concentration and the signal intensities.
机译:在此研究项目中,已经研究了使用激光解吸作为固相微萃取(SPME)的样品引入方法。三种不同类型的分析仪器,质谱仪(MS),离子迁移谱仪(IMS)和气相色谱仪(GC)被用作检测器。在此构建并描述了激光解吸SPME与这三种仪器的耦合。使用SPME / SELDI-IMS 400B装置研究了聚(乙二醇)400(PEG)的电离机理。发现离子迁移谱中都存在钾离子和钠离子。四极杆飞行时间(QTOF)MS获得的结果证实了钾离子和钠离子都存在。该结果表明,当聚合物从PPY涂层的二氧化硅表面直接电离时,阳离子化是主要的电离过程。还使用此SPME / SELDI设备测试了四种具有不同平均分子量的PEG和聚丙二醇400。这些聚合物的离子迁移谱之间的差异可用于快速鉴定合成聚合物。 (UMI缩短了摘要。)开发了固相微萃取/表面增强激光解吸电离纤维(SPME / SELDI),并将其与两个IMS设备耦合。 SPME / SELDI将采样,样品制备和样品引入与分析物的电离和解吸结合在一起。除了作为SPME纤维的萃取阶段之外,导电聚合物涂层还可以促进电离过程,而无需基质辅助的激光解吸/电离(MALDI)基质。用SPME / SELDI-IMS设备研究了SPME涂层的性能和激光解吸SPME的实验参数。新的SPME / SELDI-IMS 400B设备具有更快的数据采集系统和更强大的数据分析程序。最佳激光操作参数为250μJ激光能量和20 Hz重复频率。开发了三种新的SPME涂料:聚吡咯(PPY),聚噻吩(PTH)和聚苯胺(PAN),并通过IMS和GC进行了评估。发现PPY涂层具有最佳性能,并在大多数实验中使用。然后使用IMS和MS评估PPY和PTH SPME / SELDI光纤的特性。在纤维表面积和信号强度之间以及浓度和信号强度之间可以观察到良好的线性。

著录项

  • 作者

    Wang, Yan.;

  • 作者单位

    University of Waterloo (Canada).;

  • 授予单位 University of Waterloo (Canada).;
  • 学科 Chemistry Analytical.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 221 p.
  • 总页数 221
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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