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开发一种用于高分辨率离子迁移率分离与信使标记红外光谱联用的平台,以进行高精度结构表征。

Development of a Platform for High-Resolution Ion Mobility Separations Coupled with Messenger Tagging Infrared Spectroscopy for High-Precision Structural Characterizations.

作者信息

Harrilal Christopher P, Garimella Sandilya V B, Norheim Randolph V, Ibrahim Yehia M

机构信息

Biological Sciences Division, Pacific Northwest National Laboratory, P.O. Box 999, Richland, Washington 99354, United States.

出版信息

Anal Chem. 2025 Feb 4;97(4):2103-2110. doi: 10.1021/acs.analchem.4c04780. Epub 2024 Nov 28.

Abstract

The ability to uniquely identify a compound requires highly precise and orthogonal measurements. Here we describe a newly developed analytical platform that integrates high resolution ion mobility and cryogenic vibrational ion spectroscopy for high-precision structural characterizations. This platform allows for the temporal separation of isomeric/isobaric ions and provides a highly sensitive description of the ion's adopted geometry in the gas phase. The combination of these orthogonal structural measurements yields precise descriptors that can be used to resolve between and confidently identify highly similar ions. The unique benefits of our instrument, which integrates a structures for lossless ion manipulations ion mobility (SLIM IM) device with messenger tagging infrared spectroscopy, include the ability to perform high-resolution ion mobility separations and to record the IR spectra of all ions simultaneously. The SLIM IM device, with its 13 m separation path length, allows for multipass experiments to be performed for increased resolution as needed. It is integrated with an Agilent qTOF MS where the collision cell was replaced with a cryogenically held (30 K) TW-SLIM module. The cryo-SLIM is operated in a novel manner that allows ions to be streamed through the device and collisionally cooled to a temperature where they can form noncovalently bound N complexes that are maintained as they exit the device and are detected by the TOF mass analyzer. The instrument can be operated in two modes: IMS+IR where the IR spectra for mobility-selected ions can be recorded and IR-only mode where the IR spectra for all mass-resolved ions can be recorded. In IR-only mode, IR spectra (400 cm spectral range) can be recorded in as short as 2 s for high throughput measurements. This work details the construction of the instrument and modes of operation. It provides initial benchmarking of CCS and IR measurements to demonstrate the utility of this instrument for targeted and untargeted approaches.

摘要

唯一识别一种化合物的能力需要高度精确且相互独立的测量。在此,我们描述了一种新开发的分析平台,该平台集成了高分辨率离子淌度和低温振动离子光谱技术,用于高精度结构表征。这个平台能够实现同分异构体/等压离子的时间分离,并对离子在气相中所采用的几何结构提供高度灵敏的描述。这些相互独立的结构测量相结合,产生了精确的描述符,可用于区分并可靠地识别高度相似的离子。我们的仪器具有独特优势,它将无损离子操纵离子淌度(SLIM IM)装置与信使标记红外光谱相结合,能够进行高分辨率离子淌度分离,并同时记录所有离子的红外光谱。SLIM IM装置具有13米的分离路径长度,可根据需要进行多程实验以提高分辨率。它与安捷伦qTOF质谱仪集成,其中碰撞池被一个低温保持(30 K)的TW-SLIM模块取代。低温SLIM以一种新颖的方式运行,使离子能够流经该装置并通过碰撞冷却至一定温度,在该温度下它们可以形成非共价结合的N络合物,这些络合物在离开装置时得以保持,并被TOF质量分析仪检测到。该仪器可以在两种模式下运行:IMS+IR模式,可记录迁移率选择离子的红外光谱;仅IR模式,可记录所有质量分辨离子的红外光谱。在仅IR模式下,对于高通量测量,可在短短2秒内记录400厘米光谱范围内的红外光谱。这项工作详细介绍了仪器的构造和操作模式。它提供了CCS和IR测量的初步基准测试,以证明该仪器在靶向和非靶向方法中的实用性。

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