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Separation of ions from explosives in differential mobility spectrometry by vapor-modified drift gas

机译:蒸气改性漂移气体在差示迁移谱法中分离炸药中的离子

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Differential mobility spectrometry (DMS) of nitro-organic explosives and related compounds exhibited the expected product ions of M- or M.NO2- from atmospheric pressure chemical ionization reactions in purified air at 100 degreesC. 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 cm(2)). The field dependence of ions, described as an a parameter, ranged from -0.005 to 0.02 at a separation field of 100 Td. The a 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 K-l - K-h, where K-l is the mobility coefficient of ions clustered with vapor neutrals during the low-field portion of the separation field waveform and K-h is for the same core ion when heated and declustered during the high-field portion of waveform.
机译:硝基有机炸药和相关化合物的差动迁移谱(DMS)在100℃的纯净空气中显示出大气压化学电离反应产生的M-或M.NO2-预期产物离子。这些离子的差分迁移谱中的峰值被限制在-1至+3 V之间的窄补偿电压范围内,这是由于电场对E / N值为0至120 Td( 1 Td = 10(-17)V cm(2))。离子的场依赖性(描述为一个参数)在100 Td的分离场范围为-0.005至0.02。可以通过向漂移气体中添加有机蒸气来控制该参数,并使用漂移气体中的1000 ppm的二氯甲烷将其增加到0.08-0.24。漂移气体的这种变化导致峰值的补偿电压为+3至+21V。改善的峰分离与通过DeltaK或K1-Kh表征离子的模型相一致,其中K1是在分离场波形的低场部分期间与蒸气中性分子聚集的离子的迁移系数,Kh是针对同一核在波形的高场部分加热和解聚时产生离子。

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