FELIX Laboratory, Institute for Molecules and Materials, Radboud University, Toernooiveld 7, 6525 ED Nijmegen, The Netherlands.
Forensic Laboratory, Unit Amsterdam, Dutch National Police, Kabelweg 25, 1014 BA Amsterdam, The Netherlands.
Anal Chem. 2021 Feb 2;93(4):2687-2693. doi: 10.1021/acs.analchem.0c05042. Epub 2021 Jan 20.
The capability of an ion trap mass spectrometer to store ions for an arbitrary amount of time allows the use of a single infrared (IR) laser to perform two-color double resonance IR-IR spectroscopic experiments on mass-to-charge (/) selected ions. In this single-laser IRMS scheme, one IR laser frequency is used to remove a selected set of isomers from the total trapped ion population and the second IR laser frequency, from the same laser, is used to record the IR spectrum of the remaining precursor ions. This yields isomer-specific vibrational spectra of the /-selected ions, which can reveal the structure and identity of the initially co-isolated isomeric species. The use of a single laser greatly reduces the experimental complexity of two-color IRMS and enhances its application in fields employing analytical MS. In this work, we demonstrate the methodology by acquiring single-laser IRMS spectra in a forensic context, identifying two previously unidentified isomeric novel psychoactive substances (NPS) from a sample that was confiscated by the Amsterdam Police.
离子阱质谱仪能够将离子存储任意长的时间,这使得我们可以使用单个红外(IR)激光对质荷比(/)选择的离子进行双色双共振 IR-IR 光谱实验。在这种单激光 IRMS 方案中,一个 IR 激光频率用于从总捕获离子群体中去除选定的一组异构体,而第二个 IR 激光频率(来自同一激光)用于记录剩余前体离子的 IR 光谱。这产生了/-选择离子的异构体特异性振动光谱,可揭示最初共分离的异构体的结构和身份。使用单个激光大大降低了双色 IRMS 的实验复杂性,并增强了其在采用分析 MS 的领域中的应用。在这项工作中,我们通过在法医背景下获取单激光 IRMS 光谱来证明该方法,从阿姆斯特丹警方没收的样本中鉴定出两种以前未识别的新型精神活性物质(NPS)异构体。