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A compact high resolution ion mobility spectrometer for fast trace gas analysis

机译:紧凑型高分辨率离子迁移谱仪,用于快速痕量气体分析

摘要

Drift tube ion mobility spectrometers (IMS) are widely used for fast trace gas detection in air, but portable compact systems are typically very limited in their resolving power. Decreasing the initial ion packet width improves the resolution, but is generally associated with a reduced signal-to-noise-ratio (SNR) due to the lower number of ions injected into the drift region. In this paper, we present a refined theory of IMS operation which employs a combined approach for the analysis of the ion drift and the subsequent amplification to predict both the resolution and the SNR of the measured ion current peak. This theoretical analysis shows that the SNR is not a function of the initial ion packet width, meaning that compact drift tube IMS with both very high resolution and extremely low limits of detection can be designed. Based on these implications, an optimized combination of a compact drift tube with a length of just 10 cm and a transimpedance amplifier has been constructed with a resolution of 183 measured for the positive reactant ion peak (RIP+), which is sufficient to e.g. separate the RIP+ from the protonated acetone monomer, even though their drift times only differ by a factor of 1.007. Furthermore, the limits of detection (LODs) for acetone are 180 ppt(v) within 1 s of averaging time and 580 pptv within only 100 ms.
机译:漂移管离子迁移谱仪(IMS)被广泛用于空气中快速痕量气体的检测,但是便携式紧凑型系统的分辨力通常非常有限。减小初始离子包宽度可提高分辨率,但由于注入漂移区的离子数量较少,通常会降低信噪比(SNR)。在本文中,我们提出了一种改进的IMS操作理论,该理论采用一种结合的方法来分析离子漂移和随后的扩增,以预测所测离子流峰的分辨率和SNR。该理论分析表明,SNR不是初始离子包宽度的函数,这意味着可以设计紧凑型漂移管IMS,既具有很高的分辨率又具有极低的检测限。基于这些含义,已经构建了长度仅为10 cm的紧凑型漂移管和跨阻放大器的优化组合,对于正反应离子峰(RIP +)测得的分辨率为183,足以达到例如。将RIP +与质子化丙酮单体分开,即使它们的漂移时间仅相差1.007倍。此外,丙酮的检出限(LOD)在平均时间的1 s内为180 ppt(v),在仅100 ms的时间内为580 pptv。

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