Department of Chemistry , Indian Institute of Science Education and Research Tirupati , Tirupati 517507 , India.
Department of Chemistry , Stanford University , Stanford , California 94305-5080 , United States.
J Phys Chem A. 2019 Sep 12;123(36):7704-7709. doi: 10.1021/acs.jpca.9b05703. Epub 2019 Sep 4.
Often, studies of microdroplet chemistry using electrospray ionization mass spectrometry (MS) either find a negligible effect of the heated inlet capillary of the mass spectrometer on the reaction rate or do not consider its effect. In this context, we studied two reactions in microdroplets, the Pomeranz-Fritsch synthesis of isoquinoline and the Combes quinoline synthesis. The reagents were electrosprayed with methanol and aqueous solutions forming small and large microdroplets at flow rates of 1 and 20 μL/min, respectively. We also varied the inlet capillary temperature from 100 to 350 °C. Contrary to the view that the inlet temperature has little to no influence on the reaction rate, we found that the Pomeranz-Fritsch reaction was markedly accelerated for both solvents and for both droplet sizes on increasing the temperature, whereas the Combes synthesis showed the opposite behavior. We propose that these strikingly different behaviors result from a competition of two effects, the evaporative cooling versus the heating of ejected bare ions from the droplet, both taking place inside the heated inlet. This finding suggests that these phenomena must be taken into account while interpreting the microdroplet reactions studied by electrospray or a similar kind of ambient ionization MS.
通常,使用电喷雾电离质谱(MS)研究微滴化学时,要么发现质谱仪加热进样毛细管对反应速率的影响可以忽略不计,要么不考虑其影响。在这种情况下,我们研究了微滴中的两个反应,即 Pomeranz-Fritsch 异喹啉合成和 Combes 喹啉合成。在流速分别为 1 和 20 μL/min 的情况下,用甲醇和水溶液电喷雾喷射试剂,形成小滴和大微滴。我们还将进样毛细管温度从 100°C 变化到 350°C。与认为进样温度对反应速率影响不大的观点相反,我们发现对于两种溶剂和两种液滴尺寸,升高温度都会显著加速 Pomeranz-Fritsch 反应,而 Combes 合成则表现出相反的行为。我们提出,这些明显不同的行为是由于两种效应的竞争造成的,即蒸发冷却与从液滴中喷射出的裸露离子的加热之间的竞争,这两种效应都发生在加热的进样口中。这一发现表明,在解释通过电喷雾或类似的环境电离 MS 研究的微滴反应时,必须考虑到这些现象。