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Augmenting Ion Trap Mass Spectrometers Using a Frequency Modulated Drift Tube Ion Mobility Spectrometer

机译:使用调频漂移管离子迁移谱仪增强离子阱质谱仪

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Historically, high pressure ion mobility drift tubes have suffered from low ion duty cycles and this problem is magnified when such instrumentation is coupled with ion trap mass spectrometers. To significantly alleviate these issues, we outline the result from coupling an atmospheric pressure, dual-gate drift tube ion mobility spectrometer (IMS) to a linear ion trap mass spectrometer (LIT-MS) via modulation of the ion beam with a linear frequency chirp. The time-domain ion current, once Fourier transformed, reveals a standard ion mobility drift spectrum that corresponds to the standard mode of mobility analysis. By multiplexing the ion beam, it is possible to successfully obtain drift time spectra for an assortment of simple peptide and protein mixtures using an LIT-MS while showing improved signal intensity versus the more common signal averaging technique. Explored here are the effects of maximum injection time, solution concentration, total experiment time, and frequency swept on signal-to-noise ratios (SNRs) and resolving power. Increased inject time, concentration, and experiment time all generally led to an improvement in SNR, while a greater frequency swept increases the resolving power at the expense of SNR. Overall, chirp multiplexing of a dual-gate IMS system coupled to an LIT-MS improves ion transmission, lowers analyte detection limits, and improves spectral quality.
机译:从历史上看,高压离子迁移率漂移管的离子占空比低,而当这种仪器与离子阱质谱仪结合使用时,这个问题就被放大了。为了显着缓解这些问题,我们概述了通过使用线性频率线性调频调制离子束将大气压双门漂移管离子迁移谱仪(IMS)耦合到线性离子阱质谱仪(LIT-MS)的结果。傅立叶变换后的时域离子电流揭示了与迁移率分析的标准模式相对应的标准离子迁移率漂移谱。通过复用离子束,可以使用LIT-MS成功获得各种简单肽和蛋白质混合物的漂移时间谱,同时显示出比更常见的信号平均技术更高的信号强度。此处探讨的是最大进样时间,溶液浓度,总实验时间和扫描频率对信噪比(SNR)和分辨能力的影响。进样时间,浓度和实验时间的增加通常都导致SNR的提高,而更大的扫频频率则以SNR为代价提高了分辨能力。总体而言,与LIT-MS耦合的双门IMS系统的chi多路复用可改善离子传输,降低分析物检测限并提高光谱质量。

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