离子迁移光谱法
漂移管,漂移管
化学
再现性
质谱法
航程(航空)
分析化学(期刊)
标识符
标准化
离子
碰撞
色谱法
航空航天工程
计算机科学
有机化学
计算机安全
工程类
程序设计语言
操作系统
作者
Sarah M. Stow,Tim Causon,Xueyun Zheng,Ruwan T. Kurulugama,Teresa Mairinger,Jody C. May,Emma E. Rennie,Erin Baker,Richard Smith,John A. McLean,Stephan Hann,John C. Fjeldsted
标识
DOI:10.1021/acs.analchem.7b01729
摘要
Collision cross section (CCS) measurements resulting from ion mobility–mass spectrometry (IM-MS) experiments provide a promising orthogonal dimension of structural information in MS-based analytical separations. As with any molecular identifier, interlaboratory standardization must precede broad range integration into analytical workflows. In this study, we present a reference drift tube ion mobility mass spectrometer (DTIM-MS) where improvements on the measurement accuracy of experimental parameters influencing IM separations provide standardized drift tube, nitrogen CCS values (DTCCSN2) for over 120 unique ion species with the lowest measurement uncertainty to date. The reproducibility of these DTCCSN2 values are evaluated across three additional laboratories on a commercially available DTIM-MS instrument. The traditional stepped field CCS method performs with a relative standard deviation (RSD) of 0.29% for all ion species across the three additional laboratories. The calibrated single field CCS method, which is compatible with a wide range of chromatographic inlet systems, performs with an average, absolute bias of 0.54% to the standardized stepped field DTCCSN2 values on the reference system. The low RSD and biases observed in this interlaboratory study illustrate the potential of DTIM-MS for providing a molecular identifier for a broad range of discovery based analyses.
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