Separation of Ions from Explosives in Differential Mobility Spectrometry by Vapor-Modified Drift Gas

Разделение ионов взрывчатых веществ методом спектрометрии дифференциальной подвижности с использованием модифицированного парами газа дрейфа
Gary A. Eiceman, Evgeny V. Krylov, Erkinjon G. Nazarov, Raanan A. Miller, N. Krylova
2004-07-30

differential mobility spectrometryion clusteringmethylene chloridenitro-organic explosivesvapor-modified drift gas
Differential mobility spectrometry (DMS) of nitro-organic explosives and related compounds exhibited the expected product ions of M- or M x NO2- from atmospheric pressure chemical ionization reactions in purified air at 100 degrees C. Peaks in the differential mobility spectra for these ions were confined to a narrow range of compensation voltages between -1 to +3 V which arose through a low dependence of mobility for the ions in electric fields at E/N values between 0 and 120 Td (1 Td = 10(-17) V cm2). The field dependence of ions, described as an alpha parameter, ranged from -0.005 to 0.02 at a separation field of 100 Td. The alpha parameter could be controlled through the addition of organic vapors into the drift gas and was increased to 0.08-0.24 with 1000 ppm of methylene chloride in the drift gas. This modification of the drift gas resulted in compensation voltages of +3 to +21 V for peaks. The improved separation of peaks was consistent with a model of ion characterization by DeltaK or Kl - Kh, where Kl is the mobility coefficient of ions clustered with vapor neutrals during the low-field portion of the separation field waveform and Kh is for the same core ion when heated and declustered during the high-field portion of waveform.
1
Adding organic vapor, particularly 1000 ppm methylene chloride, increased α to 0.08–0.24 and shifted compensation voltages to +3 to +21 V.
2
Improved peak separation is explained by differential clustering with vapor neutrals at low field and declustering at high field, corresponding to ΔK = Kl−Kh.
3
In unmodified air, explosive-ion peaks occupied a narrow compensation-voltage range of −1 to +3 V because mobility depended weakly on electric field.
4
Nitro-organic explosives produced expected M− or M×NO2− product ions through atmospheric-pressure chemical ionization in purified air at 100°C.
5
The ion field-dependence parameter α ranged from −0.005 to 0.02 at a separation field of 100 Td.

Nitro-organic explosive and related-compound ions analyzed by differential mobility spectrometry in vapor-modified drift gas

Ion mobility field dependence and vapor-induced changes in the alpha parameter, compensation voltage, and peak separation through reversible clustering and declustering

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2004-07-30
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Authors
Gary A. Eiceman
Evgeny V. Krylov
Erkinjon G. Nazarov
Raanan A. Miller
N. Krylova
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