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Reactive Laser Ablation Electrospray Ionization Time-Resolved Mass Spectrometry of Click Reactions

机译:反应激光消融电喷雾电离时间分辨的点击反应质谱法

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摘要

Reactions in confined compartments like charged microdroplets are of increasing interest, notably because of their substantially increased reaction rates. When combined with ambient ionization mass spectrometry (MS), reactions in charged microdroplets can be used to improve the detection of analytes or to study the molecular details of the reactions in real time. Here, we introduce a reactive laser ablation electrospray ionization (reactive LAESI) time resolved mass spectrometry (TRMS) method to perform and study reactions in charged microdroplets. We demonstrate this approach with a class of reactions new to reactive ambient ionization MS: so-called click chemistry reactions. Click reactions are high-yielding reactions with a high atom efficiency, and are currently drawing significant attention from fields ranging from bioconjugation to polymer modification. Although click reactions are typically at least moderately fast (time scale of minutes to a few hours), in a reactive LAESI approach a substantial increase of reaction time is required for these reactions to occur. This increase was achieved using microdroplet chemistry and followed by MS using the insertion of a reaction tube up to 1 m in length between the LAESI source and the MS inlet, leading to near complete conversions due to significantly extended microdroplet lifetime. This novel approach allowed for the collection of kinetic data for a model (strain-promoted) click reaction between a substituted tetrazine and a strained alkyne and showed in addition excellent instrument stability, improved sensitivity, and applicability to other click reactions. Finally, the methodology was also demonstrated in a mass spectrometry imaging setting to show its feasibility in future imaging experiments.
机译:限制隔室的反应,如带电的微型电流的兴趣增加,特别是因为它们基本上增加的反应速率。当与环境电离质谱(MS)结合时,可以使用在带电微量滴电池的反应来改善分析物的检测或实时研究反应的分子细节。这里,我们引入反应激光烧蚀电喷雾电离(反应性LaESI)时间分辨的质谱(TRMS)方法,以在充电的微量滴电池中进行和研究反应。我们用新的反应环境电离MS的反应表明这种方法:所谓的点击化学反应。点击反应是具有高原子效率的高产生反应,目前正在从生物jugation到聚合物改性的田地中提高显着的关注。虽然点击反应通常至少适度(分钟达几小时的时间等级),但在反应性的LaESI方法中,需要大量增加反应时间来进行这些反应。使用Microdroplet化学实现这种增加,然后使用在LaESi源和MS入口之间的长度长达1μm的反应管的MS进行MS,导致由于显着延伸的Microdroplet寿命而接近完全转换。这种新方法允许收集模型的动力学数据(应变促进的)点击取代的四嗪和应变炔烃之间的反应,并表现出优异的仪器稳定性,改善灵敏度和适用性与其他点击反应。最后,在质谱成像结构中还证明了方法,以显示其在未来的成像实验中的可行性。

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