College of Chemical Engineering, Xiangtan University, Xiangtan, 411105, China.
College of Life Science, Tarim University, Alar, Xinjiang, 843300, China.
Talanta. 2022 May 1;241:123270. doi: 10.1016/j.talanta.2022.123270. Epub 2022 Feb 1.
Multiplexing the ion packet injection with advanced signal processing is an effective method to improve both the ion throughput and signal-to-noise ratio for ion mobility spectrometry. Generally used multiplexing methods include Hadamard transform ion mobility spectrometry (HT-IMS), Fourier transform ion mobility spectrometry (FT-IMS), and correlation ion mobility spectrometry (C-IMS). However, HT-IMS sometimes suffer from false peaks and further processing is needed, FT-IMS generally requires longer spectra acquisition time than the traditional signal averaging method, and C-IMS also demonstrated drawbacks such as spectra baseline distortions when using traditional on-off binary gating switches. To improve the performance of multiplexing ion mobility spectrometry, this study investigates the Fourier deconvolution to increase the resolving power and signal-to-noise ratio at the same time. This approach modulates the ion gate with a linear square wave chirp sequence and synchronizes the data acquisition and ion gate modulation and then reconstructs the ion mobility spectra based on convolution theorems. The equivalent ion injection period is decreased to microseconds scale with the signal-to-noise ratio improved by up to 13 times on average, and the resolving power is improved by up to 50% compared with traditional signal averaging methods without hardware modifications.
采用先进的信号处理技术对离子包进行多路复用是提高离子淌度谱仪离子通量和信噪比的有效方法。通常使用的多路复用方法包括 Hadamard 变换离子淌度谱(HT-IMS)、傅里叶变换离子淌度谱(FT-IMS)和相关离子淌度谱(C-IMS)。然而,HT-IMS 有时会出现伪峰,需要进一步处理;FT-IMS 通常比传统的信号平均方法需要更长的谱采集时间;而 C-IMS 也存在使用传统的开-关二进制门控开关时谱基线扭曲等缺点。为了提高多路复用离子淌度谱的性能,本研究采用傅里叶反卷积来同时提高分辨率和信噪比。该方法采用线性方波啁啾序列调制离子门,并同步数据采集和离子门调制,然后根据卷积定理重建离子淌度谱。等效的离子注入周期缩短到微秒级,信噪比平均提高了 13 倍,分辨率与传统的信号平均方法相比提高了 50%,而无需硬件修改。