Department of Chemistry, Humboldt-Universität zu Berlin, 12489 Berlin, Germany.
Bundesanstalt für Materialforschung und -Prüfung (BAM), 12489 Berlin, Germany.
Anal Chem. 2022 Dec 13;94(49):16992-16996. doi: 10.1021/acs.analchem.2c03800. Epub 2022 Nov 30.
The composition of acoustically levitated droplets was probed by a novel combination of mid-IR laser evaporation and subsequent postionization via secondary electrospray ionization. The combination of microliter samples and subnanoliter sampling provided time-resolved interrogation of droplets and allowed for a kinetic investigation of the laser-induced release of the analyte, which was found to strongly depend on the analytes. The observed substance-specific delayed release of the analytes permitted baseline-separated discrimination of the analytes, ideal for the study of complex samples. The additionally applied postionization scheme was found to enable efficient detection of small volatile compounds as well as peptides. The detection of small molecules and peptides occurred under very different sampling geometries, pointing to two distinct underlying ionization mechanisms. Overall, our results suggest that the experimental setup presented in this study can serve as a widely applicable platform to study chemical reactions in acoustically levitated droplets as model reactors.
通过中红外激光蒸发与随后的二次电喷雾电离的新颖组合,探测了悬浮液滴的组成。微升样品与亚纳升级采样的结合为液滴提供了时间分辨检测,并允许对激光诱导分析物释放的动力学进行研究,发现该释放强烈依赖于分析物。观察到的分析物的特定延迟释放允许对分析物进行基线分离的区分,非常适合复杂样品的研究。此外应用的正离子化方案被发现能够有效地检测小挥发性化合物和肽。小分子和肽的检测是在非常不同的采样几何形状下进行的,这表明存在两种不同的基本电离机制。总的来说,我们的结果表明,本研究中提出的实验装置可以作为一个广泛适用的平台,用于研究作为模型反应器的悬浮液滴中的化学反应。