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首页> 外文期刊>質量分析 >Proton Transfer Reaction Time-of-Flight Mass Spectrometry at Low Drift-Tube Field-Strengths Using an H_2O-Rare Gas Discharge-Based Ion Source
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Proton Transfer Reaction Time-of-Flight Mass Spectrometry at Low Drift-Tube Field-Strengths Using an H_2O-Rare Gas Discharge-Based Ion Source

机译:H_2O稀少气体放电为基础的离子源在低漂移管场强下的质子转移反应飞行时间质谱

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A discharge-based proton transfer reaction (PTR) ion source was operated using a mixture of H_2O and rare gases such as He, Ne, Ar, and Kr in combination with a custom-built time-of-flight (TOF) mass spectrometer. In contrast to an "H_2O-only" discharge, which usually functions above a field strength (E/N) of 100 Td for a drift tube, an "H_2O-rare gas"-based discharge was operated successfully at E/N values between 30 and 50 Td. (E is the electric field strength (V cm~(-1)), N is the buffer gas number density (molecule cm~(-3)), and 1 Td=10~(-17)cm~2 V molecule_(-1).) The intensity of primary ions (H_3O~+ · H_2O)_n) generated in the "H_2O-rare gas" discharge was comparable to that in the "H_2O-only" discharge. Although detection sensitivities decreased for nonpolar molecules such as isoprene, benzene, toluene, and p-xylene, they increased for polar molecules such as acetone and acetaldehyde. This suggests that the operation of the PTR-TOF mass spectrometer at low drift-tube field-strengths improves both the detection sensitivity and selectivity for the polar molecules. In addition, fragmentation in the drift tube was suppressed significantly for fragile species such as methyl nitrate, in the low E/N operation.
机译:基于放电的质子转移反应(PTR)离子源是使用H_2O和稀有气体(例如He,Ne,Ar和Kr)的混合物与定制的飞行时间(TOF)质谱仪结合操作的。与通常仅在漂移管的场强(E / N)大于100 Td的情况下起作用的“仅H_2O”放电相反,基于“ H_2O稀有气体”的放电在E / N值介于30和50 Td。 (E是电场强度(V cm〜(-1)),N是缓冲气体数密度(分子cm〜(-3)),1 Td = 10〜(-17)cm〜2 V分子_( -1)。)在“ H_2O稀有气体”放电中产生的一次离子(H_3O〜+·H_2O)_n的强度与在“仅H_2O”放电中产生的强度相当。尽管对非极性分子(如异戊二烯,苯,甲苯和对二甲苯)的检测灵敏度降低,但对极性分子(如丙酮和乙醛)的检测灵敏度却提高了。这表明PTR-TOF质谱仪在低漂移管场强下的操作可提高极性分子的检测灵敏度和选择性。此外,在低E / N操作下,对于易碎物质(例如硝酸甲酯),漂移管中的碎裂得到显着抑制。

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