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Design Fabrication and Mass-spectrometric Studies of a Micro Ion Source for High-Field Asymmetric Waveform Ion Mobility Spectrometry

机译:用于高场非对称波形离子迁移谱的微离子源的设计制备和质谱研究

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摘要

A needle-to-cylinder electrode, adopted as an ion source for high-field asymmetric ion mobility spectrometry (FAIMS), is designed and fabricated by lithographie, galvanoformung and abformung (LIGA) technology. The needle, with a tip diameter of 20 μm and thickness of 20 μm, and a cylinder, with a diameter of 400 μm, were connected to the negative high voltage and ground, respectively. A negative corona and glow discharge were realized. For acetone with a density of 99.7 ppm, ethanol with a density of 300 ppm, and acetic ether with a density of 99.3 ppm, the sample gas was ionized by the needle-to-cylinder chip and the ions were detected by an LTQ XL™ (Thermo Scientific Corp.) mass spectrometer. The mass spectra show that the ions are mainly the protonated monomer, the proton bound dimer, and an ion-H2O molecule cluster. In tandem with a FAIMS system, the FAIMS spectra show that the resolving power increases with an increase in the RF voltage. The obtained experimental results showed that the micro needle-to-cylinder chip may serve as a miniature, low cost and non-radioactive ion source for FAIMS.
机译:采用平版印刷术,电化石和电化子(LIGA)技术设计和制造了用作高场非对称离子迁移光谱法(FAIMS)的离子源的针筒电极。针头的直径为20μm,厚度为20μm,圆柱体的直径为400μm,分别连接到负高压和接地。实现了负电晕和辉光放电。对于密度为99.7 ppm的丙酮,密度为300 ppm的乙醇和密度为99.3 ppm的乙醚,样品气通过针头到圆柱体芯片离子化,并且离子通过LTQ XL™检测(Thermo Scientific Corp.)质谱仪。质谱表明离子主要是质子化的单体,质子结合的二聚体和离子-H2O分子簇。与FAIMS系统配合使用,FAIMS光谱显示,分辨能力随RF电压的增加而增加。获得的实验结果表明,微针对圆柱芯片可以作为FAIMS的微型,低成本,非放射性离子源。

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