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通过将离子富集、减少歧视和时间压缩整合到单个门控过程中提高廷德尔-鲍威尔门控离子迁移谱的性能。

Enhancing the Performance of Tyndall-Powell Gate Ion Mobility Spectrometry by Combining Ion Enrichment, Discrimination Reduction, and Temporal Compression into a Single Gating Process.

作者信息

Yang Qimu, Xu Yiqian, Pan Manman, Jiang Dandan, Wang Zhenxin, Wang Weiguo, Shi Xianzhe, Chen Chuang, Li Haiyang

机构信息

CAS Key Laboratory of Separation Science for Analytical Chemistry, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian 116023, People's Republic of China.

University of Chinese Academy of Sciences, Beijing 100049, People's Republic of China.

出版信息

Anal Chem. 2024 Jul 9;96(27):10893-10900. doi: 10.1021/acs.analchem.4c00582. Epub 2024 Jun 26.

Abstract

The broad applications of ion mobility spectrometry (IMS) demand good sensitivity and resolving power for ion species with different reduced mobilities (). In this work, a new Tyndall-Powell gate (TPG) gating method for combining ion enrichment, mobility discrimination reduction, and temporal compression into a single gating process is proposed to improve IMS analysis performance. The two-parallel-grid structure and well-confined gate region of the TPG make it convenient to spatiotemporally vary the electric fields within and around the gate region. Under the new gating method, a potential wave is applied on TPG grid 1 to enrich ions within the ionization region adjacent to the TPG during the gate-closed state; meanwhile, a potential wave is applied on TPG grid 2 to enhance mobility discrimination reduction and temporal compression simultaneously during the gate-open state. For triethyl phosphate (TEP) and dimethyl methylphosphonate mixtures, product ion peaks within of 1.9 to 1.1 cm/V·s exhibit a 19-fold increase in ion current compared to the traditional TPG gating method, while maintaining a resolving power of 85. The estimated limit of detection for the TEP dimer is lowered from 8 ppb to 135 ppt. The new gating method can be applied to other TPG-based IMS systems to enhance their performance in analyzing complex samples.

摘要

离子迁移谱(IMS)的广泛应用要求对具有不同折合迁移率的离子物种具备良好的灵敏度和分辨能力。在这项工作中,提出了一种新的廷德尔 - 鲍威尔门控(TPG)门控方法,该方法将离子富集、迁移率歧视降低和时间压缩整合到单个门控过程中,以提高IMS分析性能。TPG的双平行栅格结构和限制良好的门控区域使得方便地在时空上改变门控区域内及其周围的电场。在新的门控方法下,在门控关闭状态期间,在TPG栅格1上施加一个电位波,以富集与TPG相邻的电离区域内的离子;同时,在门控打开状态期间,在TPG栅格2上施加一个电位波,以同时增强迁移率歧视降低和时间压缩。对于磷酸三乙酯(TEP)和甲基膦酸二甲酯混合物,与传统的TPG门控方法相比,折合迁移率在1.9至1.1 cm/V·s范围内的产物离子峰的离子电流增加了19倍,同时保持了85的分辨能力。TEP二聚体的估计检测限从8 ppb降低到135 ppt。这种新的门控方法可应用于其他基于TPG的IMS系统,以提高其在分析复杂样品方面的性能。

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