首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Investigation of the Desorption Process in UV Matrix-Assisted Laser Desorption/Ionization with a Liquid 3-Nitrobenzyl Alcohol Matrix by Photoacoustic Analysis, Fast-Flash Imaging, and UV-Laser Postionization
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Investigation of the Desorption Process in UV Matrix-Assisted Laser Desorption/Ionization with a Liquid 3-Nitrobenzyl Alcohol Matrix by Photoacoustic Analysis, Fast-Flash Imaging, and UV-Laser Postionization

机译:通过光声分析,快速闪光成像和UV激光后离子化技术研究液态3-硝基苄基酒精基质在UV基体辅助激光解吸/电离中的解吸过程

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Ultraviolet matrix-assisted laser desorption/ionization mass spectrometry (UV-MALDI-MS) is a widely used method for the analysis of a variety of biomolecules. The technique relies on the codesorption of matrix and intact analyte molecules from the condensed to the gaseous phase and subsequent analyte ionization. In spite of numerous studies, the MALDI processes are not yet fully understood. Here, we used 3-nitrobenzyl alcohol as a liquid matrix and employed three complementary analytical techniques to monitor the phase transition and development of the ejected material plume. Each of these methods provided a time resolution in the nanosecond range. (i) Photoacoustic stress waves, generated by the recoil momentum of the ejected material, were recorded simultaneously with the corresponding MALDI-generated analyte ion signals, (ii) The MALDI plume expansion was monitored by using a second illumination laser for imaging the plume in dark-field and in scattered-light geometries, allowing discrimination between ejected droplets and gaseous plume domains, (iii) Time- and space-resolved UV-laser postionization of desorbed matrix molecules complemented these studies. The photoacoustic data indicate the transition from a primarily molecular ejection according to a quasithermal model at low laser fluences to a (layer-by-layer) phase explosion above a fluence threshold of about 170 J/m~2. Notably, this threshold coincides well with the onset of sizable ion generation. A few distinct droplets are detected over the whole of the investigated fluence range.
机译:紫外线基质辅助激光解吸/电离质谱(UV-MALDI-MS)是一种广泛用于分析各种生物分子的方法。该技术依赖于基质和完整分析物分子从冷凝态到气相的共吸附以及随后的分析物离子化。尽管进行了许多研究,但尚未完全理解MALDI过程。在这里,我们使用3-硝基苄醇作为液体基质,并采用了三种互补的分析技术来监测喷射物质羽流的相变和发展。这些方法中的每一种都提供了纳秒级的时间分辨率。 (i)记录由喷射材料的反冲动量产生的光声应力波,同时记录相应的MALDI产生的分析物离子信号;(ii)MALDI羽流膨胀是通过使用第二个照明激光对羽流成像进行监测的。在暗场和散射光的几何形状中,可以区分喷射的液滴和气态羽流域。(iii)解吸的基质分子的时间和空间分辨UV激光离子化对这些研究进行了补充。光声数据表明,在低激光通量下,从准分子模型的主要分子喷射转变为通量阈值约170 J / m〜2以上的(逐层)相变。值得注意的是,该阈值与相当大的离子产生的开始非常吻合。在整个研究的注量范围内检测到一些不同的液滴。

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