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采用两端混合气体进样模式,同时提高平面高场非对称波形离子迁移谱的分辨率和灵敏度。

Simultaneously improving the resolving power and sensitivity for planar high-field asymmetric waveform ion mobility spectrometry using a mixed gas inlet mode at two ends.

机构信息

School of Life and Environmental Sciences, Guilin University of Electronic Technology, Guilin, Guangxi, China.

出版信息

Rapid Commun Mass Spectrom. 2021 Dec 15;35(23):e9198. doi: 10.1002/rcm.9198.

Abstract

RATIONALE

Resolution and sensitivity are two key parameters for describing the performance of high-field asymmetric waveform ion mobility spectrometry (FAIMS). An increase in the resolving power of FAIMS has been realized by adding helium to nitrogen in planar FAIMS, but it comes at the expense of sensitivity.

METHODS

Here, a new hollow needle-to-ring discharge device integrated on a PCB substrate is used as the ion source for FAIMS. Helium flows from the hollow part of the hollow needle to improve the ionization effect. Nitrogen carries the sample into the ionization chamber and is mixed with helium as the carrier gas.

RESULTS

Under a nitrogen flow rate of 1 L min , 1.5 L min , 2 L min , and 2.5 L min , adding helium at different flow rates (0.2 L min , 0.3 L min , 0.5 L min , and 1 L min ) can simultaneously improve the separation ability and sensitivity. Helium and nitrogen with flow rates of 0.2, 0.3, 0.5, and 1 L min were added to nitrogen (2 L min ). The separation ability and sensitivity of the mixed gases doped with helium are better than those of nitrogen. The larger the RF voltage amplitude is, the more obvious the improvement in the separation ability when helium is added. However, helium doping has the opposite effect on the sensitivity.

CONCLUSIONS

This study provides a new idea and technical means for the application of helium and nitrogen gas mixtures in planar FAIMS. This method can greatly improve the performance of FAIMS.

摘要

原理

分辨率和灵敏度是描述高场非对称波形离子淌度谱(FAIMS)性能的两个关键参数。在平面 FAIMS 中加入氦气以氮气,可以提高 FAIMS 的分辨率,但这是以牺牲灵敏度为代价的。

方法

在这里,一种新的空心针-环放电装置集成在 PCB 基板上,用作 FAIMS 的离子源。氦气从空心针的空心部分流出,以提高电离效果。氮气将样品带入电离室,并与氦气混合作为载气。

结果

在氮气流量为 1 L/min、1.5 L/min、2 L/min 和 2.5 L/min 的情况下,以不同的流速(0.2 L/min、0.3 L/min、0.5 L/min 和 1 L/min)添加氦气可以同时提高分离能力和灵敏度。在氮气流量为 2 L/min 的情况下,分别向氮气中添加氦气和氮气的流速为 0.2、0.3、0.5 和 1 L/min。与氮气相比,混合气体中掺杂氦气的分离能力和灵敏度更好。RF 电压幅度越大,添加氦气时分离能力的提高越明显。然而,氦气掺杂对灵敏度有相反的影响。

结论

本研究为氦气和氮气混合物在平面 FAIMS 中的应用提供了新的思路和技术手段。这种方法可以大大提高 FAIMS 的性能。

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