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Tandem ion mobility spectrometry at ambient pressure and field decomposition of mobility selected ions of explosives and interferences. | LitMetric

AI Article Synopsis

  • A tandem ion mobility spectrometer was developed featuring a thermal desorption inlet, dual drift regions, and electric field components that enable isolation and decomposition of ion swarms.
  • In this system, ions like NO3- and NO2- were analyzed, achieving a decomposition rate between 60-90% based on various factors such as gas temperature and ion type.
  • The study shows that this technology can enhance the detection of explosives while minimizing false positives when faced with interference from other substances.

Article Abstract

A tandem ion mobility spectrometer at ambient pressure included a thermal desorption inlet, two drift regions, dual ion shutters, and a wire grid assembly in the second drift region. An ion swarm could be mobility isolated in the first drift region using synchronized dual ion shutters and decomposed in a wire grid assembly using electric fields of 1.80 × 104 V cm-1 (118 Td) from a 1.8 MHz sinusoidal waveform. Mobility selected ions that underwent field induced decomposition were NO3-, from PETN·Cl- and NG·Cl-, and NO2- from RDX·Cl-. The extent of decomposition ranged from 60 to 90%, depending on gas temperature, field strength, and ion identity, introducing additional controls to improve selectivity in trace determination of explosives. Ion transmission through the wire grid assembly ranged from 80 to >95% with losses increasing for increased field strength. Studies with pairs of explosives and interfering substances demonstrated decisive detection of explosives and portend reduced rates of false positive using tandem ion mobility spectrometers with a reactive stage.

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Source
http://dx.doi.org/10.1039/c8an02041hDOI Listing

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