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Micro-plasma: a novel ionisation source for ion mobility spectrometry

机译:微等离子体:用于离子迁移谱的新型电离源

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摘要

Ion mobility spectrometry is an analytical method for identification and quantification of gas-phase analytes in the ppbv-pptv range. Traditional ionisation methods suffer from low sensitivity (UV light), lack of long-term stability (partial discharge), or legal restrictions when radioactive sources are used. A miniaturised helium plasma was applied as ionisation source in an ion mobility spectrometer (IMS). Experiments were carried out to compare plasma IMS with β-radiation IMS. It could be demonstrated that the plasma IMS is characterised by higher sensitivity and selectivity than β-radiation ionisation. Plasma IMS is approximately 100 times more sensitive than the β-radiation IMS. Furthermore, variable sensitivity can be achieved by variation of the helium flow and the electric field of the plasma, and variable selectivity can be achieved by changing the electric field of the IMS. The experimental arrangement, optimisation of relevant conditions, and a typical application are presented in detail.
机译:离子迁移谱法是一种用于鉴定和定量ppbv -pptv 范围内气相分析物的分析方法。传统的电离方法具有灵敏度低(紫外线),缺乏长期稳定性(局部放电)或使用放射源的法律限制的问题。在离子迁移谱仪(IMS)中将微型氦等离子体用作电离源。进行了实验以比较血浆IMS与β辐射IMS。可以证明,等离子体IMS具有比β辐射电离更高的灵敏度和选择性。等离子体IMS的灵敏度大约是β辐射IMS的100倍。此外,可以通过改变氦气流量和等离子体的电场来实现可变的灵敏度,并且可以通过改变IMS的电场来实现可变的选择性。详细介绍了实验安排,相关条件的优化和典型应用。

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