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Open Probe fast GC–MS — combining ambient sampling ultra-fast separation and in-vacuum ionization for real-time analysis

  • U. Keshet
  • , T. Alon
  • , A. B. Fialkov
  • , A. Amirav*
  • *Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

16 Scopus citations

Abstract

An Open Probe inlet was combined with a low thermal mass ultra-fast gas chromatograph (GC), in-vacuum electron ionization ion source and a mass spectrometer (MS) of GC–MS for obtaining real-time analysis with separation. The Open Probe enables ambient sampling via sample vaporization in an oven that is open to room air, and the ultra-fast GC provides ~30-s separation, while if no separation is required, it can act as a transfer line with 2 to 3-s sample transfer time. Sample analysis is as simple as touching the sample, pushing the sample holder into the Open Probe oven and obtaining the results in 30 s. The Open Probe fast GC was mounted on a standard Agilent 7890 GC that was coupled with an Agilent 5977A MS. Open Probe fast GC–MS provides real-time analysis combined with GC separation and library identification, and it uses the low-cost MS of GC–MS. The operation of Open Probe fast GC–MS is demonstrated in the 30-s separation and 50-s full analysis cycle time of tetrahydrocannabinol and cannabinol in Cannabis flower, sub 1-min analysis of trace trinitrotoluene transferred from a finger onto a glass surface, vitamin E in canola oil, sterols in olive oil, polybrominated flame retardants in plastics, alprazolam in Xanax drug pill and free fatty acids and cholesterol in human blood. The extrapolated limit of detection for pyrene is <1 fg, but the concentration is too high and the software noise calculation is untrustworthy. The broad range of compounds amenable for analysis is demonstrated in the analysis of reserpine. The possible use with alternate standard GC–MS and Open Probe fast GC–MS is demonstrated in the analysis of heroin in its street drug powder. The use of Open Probe with the fast GC acting as a transfer line is demonstrated in <10-s analysis without separation of ibuprofen and estradiol.

Original languageEnglish
Pages (from-to)417-426
Number of pages10
JournalJournal of Mass Spectrometry
Volume52
Issue number7
DOIs
StatePublished - 1 Jul 2017

Funding

FundersFunder number
Israel Academy of Sciences and Humanities356/15
Israel Science Foundation
Ministry of Science and Technology, Israel266/15
Israel Atomic Energy Commission

    Keywords

    • Open Probe
    • Open Probe fast GC–MS
    • direct analysis in real time
    • gas chromatography mass spectrometry
    • organic surface analysis
    • real-time analysis

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