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Medium Vacuum Electron Emitter as Soft Atmospheric Pressure Chemical Ionization Source for Organic Molecules

机译:中真空电子发射体作为有机分子的软大气压化学电离源

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摘要

An electron emitter as a soft atmospheric pressure chemical ionization source is presented, which operates at inner pressures of the device in the medium vacuum range (>10(-3) hPa). Conventional nonradioactive electron emitters require high vacuum (<10(-6) hPa) to prevent electrical sparkovers. The emitter presented here contains structural modifications of an existing setup, which inhibits electrical breakdowns up to 10(-2) hPa at 8 kV acceleration voltage. The increased inner pressure reduces the ionization efficiency until 10(-3) hPa achievable without a turbomolecular pump by 2% compared to high-vacuum conditions. This can be compensated with an increase of the electron source output. The functionality of this ion source is demonstrated with mass spectrometric and ion mobility measurements of acetone, eucalyptol, and diisopropyl methanephosphonate. Additional mass spectrometric measurements of 20 different organic compounds demonstrate the soft characteristics of this ionization source
机译:提出了一种作为软大气压化学电离源的电子发射器,该电子发射器在装置的内部压力处于中等真空范围(> 10(-3)hPa)内运行。常规的非放射性电子发射器需要高真空(<10(-6)hPa)来防止电火花。此处介绍的发射器包含现有设置的结构修改,可在8 kV加速电压下抑制高达10(-2)hPa的电击穿。与高真空条件相比,增加的内部压力将电离效率降低到10(-3)hPa,而无需涡轮分子泵即可达到2%。这可以通过电子源输出的增加来补偿。该离子源的功能已通过对丙酮,桉油精和甲磺酸二异丙酯的质谱和离子迁移率测量进行了证明。额外的20种不同有机化合物的质谱测量证明了这种电离源的柔软特性

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