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Detection of Ketones by a Novel Technology: Dipolar Proton Transfer Reaction Mass Spectrometry (DP-PTR-MS). | LitMetric

AI Article Synopsis

  • Proton transfer reaction mass spectrometry (PTR-MS) is crucial for real-time monitoring of trace volatile organic compounds (VOCs) due to its sensitivity and quick response times, while a new technique called proton extraction reaction mass spectrometry (PER-MS) utilizes negative ions for detecting both VOCs and inorganic compounds.
  • The study introduces dipolar proton transfer reaction mass spectrometry (DP-PTR-MS), combining the capabilities of PTR-MS and PER-MS in a single instrument by adjusting the ion source with water vapor and switching polarity.
  • DP-PTR-MS successfully identifies the molecular weights of ketones, whether tested as single samples or in a mixture of eight, while retaining the advantageous features of both predecessor methods for sensitive and rapid

Article Abstract

Proton transfer reaction mass spectrometry (PTR-MS) has played an important role in the field of real-time monitoring of trace volatile organic compounds (VOCs) due to its advantages such as low limit of detection (LOD) and fast time response. Recently, a new technology of proton extraction reaction mass spectrometry (PER-MS) with negative ions OH as the reagent ions has also been presented, which can be applied to the detection of VOCs and even inorganic compounds. In this work, we combined the functions of PTR-MS and PER-MS in one instrument, thereby developing a novel technology called dipolar proton transfer reaction mass spectrometry (DP-PTR-MS). The selection of PTR-MS mode and PER-MS mode was achieved in DP-PTR-MS using only water vapor in the ion source and switching the polarity. In this experiment, ketones (denoted by M) were selected as analytes. The ketone (molecular weight denoted by m) was ionized as protonated ketone [M + H] [mass-to-charge ratio (m/z) m + 1] in PTR-MS mode and deprotonated ketone [M - H] (m/z m - 1) in PER-MS mode. By comparing the m/z value of the product ions in the two modes, the molecular weight of the ketone can be positively identified as m. Results showed that whether it is a single ketone sample or a mixed sample of eight kinds of ketones, the molecular weights can be detected with DP-PTR-MS. The newly developed DP-PTR-MS not only maintains the original advantages of PTR-MS and PER-MS in sensitive and rapid detection of ketones, but also can estimate molecular weight of ketones. Graphical Abstract ᅟ.

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Source
http://dx.doi.org/10.1007/s13361-017-1638-7DOI Listing

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