Institut für Analytische Chemie , University Leipzig , Linnéstraße 3 , 04103 Leipzig , Germany.
Wilhelm-Ostwald-Institut für Physikalische und Theoretische Chemie , Universität Leipzig , Linnéstraße 2 , 04103 Leipzig , Germany.
Anal Chem. 2019 Mar 5;91(5):3199-3203. doi: 10.1021/acs.analchem.8b05532. Epub 2019 Jan 16.
A cryogenic ion trap vibrational spectrometer is combined with a microfluidic chip reactor in a proof-of-principle experiment on the Hantzsch cyclization reaction forming 2-amino-4-phenyl thiazole from phenacyl bromide and thiourea. First, the composition of the reaction solution is characterized using electrospray-ionization mass spectrometry combined with two-color infrared photodissociation (IRPD) spectroscopy. The latter yields isomer-specific vibrational spectra of the reaction intermediates and products. A comparison to results from electronic structure calculations then allows for an unambiguous structural assignment and molecular-level insights into the reaction mechanism. Subsequently, we demonstrate that isomeric and isobaric ions can be selectively monitored online with low process time, i.e., using a single IRPD wavelength per isomer, as the chip reaction parameters are varied.
在 Hantzsch 环化反应形成 2-氨基-4-苯基噻唑的原理验证实验中,将低温离子阱振动光谱仪与微流控芯片反应器相结合,使用电喷雾电离质谱结合双色红外光解(IRPD)光谱对反应溶液的组成进行了表征。后者得到了反应中间体和产物的异构体特异性振动光谱。与电子结构计算结果进行比较,然后可以进行明确的结构分配和分子水平的反应机制见解。随后,我们证明可以在线选择性地监测具有低过程时间的异构和等质异位离子,即使用每个异构体的单个 IRPD 波长,因为芯片反应参数会发生变化。