4.7 Article

Towards a hand-held, fast, and sensitive gas chromatograph-ion mobility spectrometer for detecting volatile compounds

期刊

ANALYTICAL AND BIOANALYTICAL CHEMISTRY
卷 413, 期 4, 页码 1009-1016

出版社

SPRINGER HEIDELBERG
DOI: 10.1007/s00216-020-03059-9

关键词

Ion mobility spectrometer; IMS; Gas chromatograph; GC; Bundled GC columns; Hand-held GC-IMS

资金

  1. Projekt DEAL
  2. European Union's Horizon 2020 research and innovation programme [653409]
  3. H2020 Societal Challenges Programme [653409] Funding Source: H2020 Societal Challenges Programme

向作者/读者索取更多资源

Ion mobility spectrometers are widely used in various applications due to their fast response times and high sensitivity, but can face challenges when dealing with gas mixtures. A miniaturized drift tube IMS coupled with a compact gas chromatograph is proposed to address this issue, reducing chemical cross sensitivities caused by competing gas-phase ionization processes through pre-separation.
Ion mobility spectrometers can detect gaseous compounds at atmospheric pressure in the range of parts per trillion within a second. Due to their fast response times, high sensitivity, and limited instrumental effort, they are used in a variety of applications, especially as mobile or hand-held devices. However, most real-life samples are gas mixtures, which can pose a challenge for IMS with atmospheric pressure chemical ionization mainly due to competing gas-phase ionization processes. Therefore, we present a miniaturized drift tube IMS coupled to a compact gas chromatograph for pre-separation, built of seven bundled standard GC columns (Rtx-Volatiles, Restek GmbH) with 250 mu m ID and 1.07 m in length. Such pre-separation significantly reduces chemical cross sensitivities caused by competing gas-phase ionization processes and adds orthogonality. Our miniaturized GC-IMS system is characterized with alcohols, halocarbons, and ketones as model substances, reaching detection limits down to 70 ppt(v) with IMS averaging times of just 125 ms. It separates test mixtures of ketones and halocarbons within 180 s and 50 s, respectively. The IMS has a short drift length of 40.6 mm and reaches a high resolving power of R-P = 68.

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