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Photoionization and photofragmentation in mass spectrometry with visible and UV lasers

机译:具有可见光和UV激光器的质谱法中的光离子化和光折杂

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Ever since the introduction of laser technology to the field of mass spectrometry, several disciplines evolved providing solutions to challenging scientific and analytical tasks in research and industry. Among these are techniques involving multiphoton ionization such as Resonance-Enhanced Multiphoton Ionization (REMPI, R2PI) and Mass-Analyzed Threshold Ionization (MATI) spectroscopy, a variant of Zero Kinetic Energy (ZEKE) spectroscopy, that possess the ability to selectively ionize certain preselected compounds out of complex mixtures, for example, environmental matrices, with a high level of efficiency. Another key feature of multiphoton ionization techniques is the ability to control the degree of fragmentation, whereas soft ionization is most highly appreciated in most applications. In cases where rich fragmentation patterns are desired for diagnostic purposes, Photodissociation mass spectrometry (PD-MS) is applied successfully. PD-MS allows for the cleavage of selected chemical bonds. With the introduction of chromophoric labels in PD-MS, it became possible to target certain molecules or groups within a molecule. In this review article, an overview of the basic principles and experimental requirements of REMPI and MATI spectroscopy and PD mass spectrometry are given. By means of selected examples, the latest developments and application possibilities in this field over the past decade with special focus on the German research landscape are pointed out. (c) 2018 Wiley Periodicals, Inc. Mass Spec Rev 38: 202-217, 2019.
机译:自从引入激光技术以来对质谱领域以来,几个学科演变提供了解决研究和工业中的科学和分析任务的解决方案。其中包括涉及多相电离的技术,例如共振增强的多相电离(REMPI,R2PI)和质量分析阈值电离(MATI)光谱,其具有零动能(Zeke)光谱的变体,其具有选择性地电离某些预选的能力复杂混合物中的化合物,例如环境基质,效率高。多光电电离技术的另一个关键特征是控制碎片程度的能力,而在大多数应用中,软电离最高度高度赞赏。在需要诊断目的期望富碎裂模式的情况下,成功地施加光度解除沉积质谱(PD-MS)。 PD-MS允许切割所选化学键。随着PD-MS中发色素标记的引入,可以靶向分子内的某些分子或基团。在本综述文章中,给出了REMPI和MATI光谱和PD质谱法的基本原理和实验要求的概述。通过选定的例子,指出了在过去十年中,特别关注德国研究景观的最新发展和应用可能性。 (c)2018 Wiley期刊,Inc。大规模规范版本38:202-217,2019。

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