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Mirror Switching for High-Resolution Ion Isolation in an Electrostatic Linear Ion Trap

机译:静电线性离子阱中高分辨率离子隔离的镜面切换

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Ion isolation was achieved via selective pulsing of the entrance and exit ion mirrors in an electrostatic linear ion trap mass spectrometer (ELIT). Mirror switching has been described previously as a method for capturing injected ions in ELIT devices. After ion trapping, mirror switching can be used as a method for ion isolation of successively narrower ranges of mass-to-charge (m/z) ratio. By taking advantage of the spatial separation of ions in an ELIT device, pulsing of the entrance and/or exit mirrors can release unwanted ions while continuing to store ions of interest. Furthermore, mirror switching can be repeated multiple times to isolate ions of very similar m/z values with minimal loss of the stored ions, as is demonstrated by the isolation of protonated L-glutamine and L-lysine (Delta m/z = 0.0364) from a mixture of the two amino acid ions and the isobaric mixture of [PC P-18:0/22:6] and [PC 19:0/19:0] (Delta m/z = 0.0575). As isolation is accomplished due to the spatial/temporal separation of ion packets within the ELIT, multiple reflection-time-of-flight (MR-TOF) mass spectra are shown to demonstrate separation in the ELIT at the time of isolation. An isolation resolution of greater than 35?000 fwhm is demonstrated here using a 5.25 in. ELIT. This resolution corresponds to the fwhm resolution necessary to reduce contaminant overlap of an equally abundant adjacent ion to 1% or less of the isolated ion intensity.
机译:通过在静电线性离子阱质谱仪(ELIT)中的入口和出口离子镜的选择性脉冲来实现离子隔离。先前已经描述了镜面切换作为用于在ELIT装置中捕获注入离子的方法。在离子捕获之后,镜面切换可以用作离子隔离的逐次较窄的质量 - 电荷(M / Z)比例的方法。通过利用ELIT装置中离子的空间分离,入口和/或出口镜的脉冲可以在继续存储感兴趣的时,脉冲可以释放不需要的离子。此外,可以多次重复镜面切换,以将非常相似的m / z值的离子与存储的离子的损失最小,如通过质子化的L-谷氨酰胺和l-赖氨酸的分离证明(Delta m / z = 0.0364)。从两个氨基酸离子的混合物和[PC P-18:0/22:6]和[PC 19:0/19:0]的同级混合物(Delta m / z = 0.0575)。由于在ELIT内的离子分组的空间/时间分离,因此在隔离时显示多次反射 - 飞行时间(MR-TOF)质谱,在隔离时显示出在ELIT中的分离。这里使用5.25 in展示了大于35 000 fwhm的隔离分辨率。Elit。该分辨率对应于将污染物与均匀的离子强度的1%或更小的污染物重叠降低的FWHM分辨率。

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